Journal articleApplied Geochemistry · October 1, 2026
Securing a North American lithium (Li) pipeline is pivotal to the clean energy transition and national security. The low-temperature sedimentary basin brines of the Devonian Alberta Basin, Canada are emerging as a promising unconventional domestic Li resou ...
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Journal articleApplied Geochemistry · September 1, 2026
Accurate pH determination in hypersaline brines is essential for reliable geochemical modeling and simulation, particularly for processes such as direct lithium extraction, carbonate precipitation potential calculations, brine reinjection assessments, and ...
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Journal articleEarth Science Reviews · July 1, 2026
The Mg/Li ratio is widely used to evaluate the extraction potential of lithium-rich brines, yet the processes controlling its variability remain poorly constrained. Across the Lithium Triangle of the Central Andes in South America, closed-basin brines exhi ...
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Journal articleEarth and Planetary Science Letters · April 1, 2026
Sustainable lithium mining is critical to the renewable energy transition. Closed-basin brines are a major source of lithium yet the processes governing lithium enrichment remain poorly understood. In the Lithium Triangle (LT) of South America, hypersaline ...
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Journal articleEnvironmental Earth Sciences · April 1, 2026
This study investigates 210Pb- and 137Cs-dated sediment records to connect hydrologic drivers to mechanisms of coal ash release from waste storage ponds into three lakes in North Carolina. Originally constructed to provide cooling wat ...
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Journal articleEnvironmental Science and Technology Letters · January 13, 2026
Determining the pH of hypersaline wastewater is essential for regulatory compliance and the feasibility of geochemical and treatment processes. Hypersaline solutions have high ionic strength, which introduces deviations among measured proton activity, its ...
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Journal articleApplied Geochemistry · December 1, 2025
Lithium-cesium-tantalum (LCT) pegmatites are a major source of global Li production. They typically occur as dike swarms intruded into metamorphic country rocks. The subsurface locations of these dikes can be difficult to identify from the surface. One com ...
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Journal articleEnvironmental science & technology · December 2025
Hard-rock Li mining from Li-pegmatites is rapidly expanding to support the clean energy transition, yet associated water-quality impacts remain understudied. Here, we evaluate surface water and groundwater in the Tin-Spodumene Belt (TSB), a legacy Li minin ...
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Journal articleJournal of hazardous materials · November 2025
The occurrence of uranium (U), thorium (Th), and radium (Ra) in phosphate rocks (PRs) leads to enrichment of these radionuclides in produced fertilizers and phosphogypsum waste byproducts. This study presents a global dataset of U- and Th- series radionucl ...
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Journal articleEnvironment international · November 2025
Fertilizers are widely used to sustain food production but can alter soil chemistry and potentially contribute toxic metal(loid)s to agricultural systems. For the first time, this study examined the occurrence of select metal(loid)s (Zn, Sr, V, As, Cd, Pb, ...
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Journal articleEnvironmental science. Advances · October 2025
Lithium is increasingly used in rechargeable batteries for mobile devices, electric vehicles, and energy storage, among other applications. One of the common formulations of lithium batteries is lithium nickel manganese cobalt oxide (LiNMC) particles. Incr ...
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Journal articleScience advances · May 2025
The global clean energy transition requires the development of alternative energy technologies that rely on critical raw materials including lithium. Closed-basin brines, which generate ~40% of global lithium production, often have a circumneutral pH; howe ...
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Journal articleEnvironmental Science and Technology Letters · February 11, 2025
The sustainability of lithium mining is one of the critical factors for a successful transition to renewable energy. A potential practice to alleviate brine level decline and loss of adjacent fresh groundwater from brine pumping in the salt pans (salars) i ...
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Journal articleEnvironmental pollution (Barking, Essex : 1987) · December 2024
Fly ash is predominately the inorganic byproduct of coal combustion for electrical power generation. It is composed of aluminosilicates with Fe, Mg, K, and Ca forming submicron to 100 μm spheres and amorphous particles. During combustion trace elements are ...
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Journal articleThe Science of the total environment · December 2024
The global green energy transition has spurred increased lithium exploration and extraction, yet the water quality impacts from lithium mining are understudied. This study investigates the potential water quality impacts from a legacy hard-rock lithium min ...
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Journal articleThe Science of the total environment · October 2024
Global Li production will require a ∼500 % increase to meet 2050 projected energy storage demands. One potential source is oil and gas wastewater (i.e., produced water or brine), which naturally has high total dissolved solids (TDS) concentrations, that ca ...
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Journal articleChemical Geology · September 5, 2024
The geochemistry of phosphate rocks can provide valuable information on their depositional environment and the redox condition of global oceans through time. Here we examine trace metal concentrations and uranium (δ238U, δ234U) and st ...
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Journal articleNature Water · August 1, 2024
Hydrocarbon recovery from conventional and unconventional wells, such as those using hydraulic fracturing (HF), generates substantial volumes of highly saline wastewater, known as flowback and produced water (FPW). Traditional evaluations of FPW management ...
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Journal articleEnvironmental Science and Technology Letters · June 11, 2024
Fertilizer utilization is critical for food security. This study examines the occurrence of trace elements (TEs) and Sr isotope (87Sr/86Sr) variations in phosphate rocks and mineral fertilizers from a sample collection representative ...
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Journal articleNature Reviews Earth and Environment · April 1, 2024
Geogenic groundwater contaminants (GGCs) affect drinking-water availability and safety, with up to 60% of groundwater sources in some regions contaminated by more than recommended concentrations. As a result, an estimated 300–500 million people are at risk ...
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Journal articleGeohealth · April 1, 2024
Peer-review is the foundation and the safeguard of scientific research. Without the dedication of our reviewers, the journal would not have been successful. In 2023, 269 reviewers completed 434 reviews for the 174 manuscripts submitted to GeoHealth. Our re ...
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Journal articleThe Science of the total environment · January 2024
Phosphate fertilizers may contain elevated concentrations of toxic metals and metalloids and therefore, their excessive application can result in the accumulation of both phosphorus (P) and metal(loid)s in agricultural soils. This study aims to investigate ...
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Journal articleThe Science of the total environment · January 2024
The rapid expansion of shale gas extraction worldwide has raised significant concerns about its impact on water resources. China is expected to undergo a shale revolution following the U.S. Most of the information on water footprint of shale gas exploratio ...
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Journal articleChemical Geology · November 20, 2023
Phosphate rock bears both geologically and environmentally significant information. Rare earth elements and yttrium (i.e., REY) characteristics have been commonly used for reconstructing the redox conditions of depositional environments and the effects of ...
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Journal articleEnvironmental science & technology · August 2023
Despite extensive research and technology to reduce the atmospheric emission of Pb from burning coal for power generation, minimal attention has been paid to Pb associated with coal ash disposal in the environment. This study investigates the isotopic sign ...
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Journal articleThe Science of the total environment · January 2023
Installation of rooftop photovoltaic (PV) solar is expected to change the electricity landscape in the U.S. through reducing greenhouse gas emissions and mitigating global warming, as well as eliminating environmental impacts from fossil fuels utilization. ...
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Journal articleFuel · December 15, 2022
Subsurface coal mining often induces the formation of acid mine drainage (AMD) in active and abandoned coal mines while coal combustion generates coal combustion residuals (CCR), including fly ash (FA), with elevated levels of toxic metals. Decades of AMD ...
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Journal articleThe Science of the total environment · December 2022
Shale gas wastewater (SGW) disposal is a major challenge in the areas in central China due to its increasing volume associated with intensification of shale gas exploration and its high levels of contaminants. In the Fuling shale gas field of Sichuan Basin ...
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Journal articleThe Science of the total environment · December 2022
High concentrations of metal(loid)s in phosphate rocks and wastewater associated with phosphate mining and fertilizer production operations pose potential contamination risks to water resources. Here, we propose using Sr isotopes as a tracer to determine p ...
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Journal articleGlobal Biogeochemical Cycles · November 1, 2022
Direct exploitation and use of arsenic resources has diminished in recent years, but inadvertent mobilizations of As from mineral extractions (metal ores, coal, and phosphate rock) are now as much as ten-fold greater (1,500–5,600 × 109 g/yr) tha ...
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Journal articleEnvironmental science & technology · October 2022
Elevated concentrations of toxic elements in coal ash pose human and ecological health risks upon release to the environment. Despite wide public concerns about water quality and human health risks from catastrophic coal ash spills and chronic leaking of c ...
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Journal articleGondwana Research · March 1, 2022
The strontium (Sr) concentration and 87Sr/86Sr ratios in leachates extracted from Upper Permian (Wuchiapingian) coals from the Tianjia Mine, Chongqing, southwestern China, were investigated using a selective leaching sequential extrac ...
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Journal articleThe Science of the total environment · February 2022
Anthropogenic lead (Pb) in soils poses risks to human health, particularly to the neuropsychological development of exposed children. Delineating the sources and potential bioavailability of soil Pb, as well as its relationship with other contaminants is c ...
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Journal articleThe Science of the total environment · February 2022
Featured Publication
This critical review presents the key factors that control the occurrence of natural elements from the uranium- and thorium-decay series, also known as naturally occurring radioactive materials (NORM), including uranium, radium, radon, lead, polonium, and ...
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Journal articleRisk analysis : an official publication of the Society for Risk Analysis · August 2021
Reuse of oilfield-produced water (OPW) for crop irrigation has the potential to make a critical difference in the water budgets of highly productive but drought-stressed agricultural watersheds. This is the first peer-reviewed study to evaluate how trace m ...
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Journal articleThe Science of the total environment · August 2021
Extensive development of horizontal drilling and hydraulic fracturing enhanced energy production but raised concerns about drinking-water quality in areas of shale-gas development. One particularly controversial case that has received significant public an ...
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Journal articleEnvironmental science & technology · August 2021
Coal combustion residuals (CCRs), in particular, coal fly ash, are one of the major industrial solid wastes in the U.S., and due to their high concentrations of toxic elements, they could pose environmental and human health risks. Yet detecting coal fly as ...
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Journal articleGlobal Biogeochemical Cycles · August 2021
AbstractThe total human mobilization of Li from the Earth's crust, >1,000 × 109 g/year, is much larger than Li mobilized by the natural processes of chemical and mechanical weathering (94 and 132 × 1 ...
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Journal articleApplied Geochemistry · July 1, 2021
Oilfield water contains valuable information on the origin, migration, and geochemical evolution of fluids in sedimentary basins. Jiuquan Basin is one of the richest oil basins in China and holds large potential for future tight oil exploration. We use a w ...
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Journal articleThe Science of the total environment · December 2020
The rise of hydraulic fracturing and unconventional oil and gas (UOG) exploration in the United States has increased public concerns for water contamination induced from hydraulic fracturing fluids and associated wastewater spills. Herein, we collected sur ...
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Journal articleGlobal Biogeochemical Cycles · December 1, 2020
This review provides a synthesis of what is currently known about the natural and anthropogenic fluxes of fluorine on Earth, offering context for an evaluation of the growing environmental impact of human-induced F mobilization and use. The largest flux of ...
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Journal articleThe Science of the total environment · September 2020
The consecutive occurrence of drought and reduction in natural water availability over the past several decades requires searching for alternative water sources for the agriculture sector in California. One alternative source to supplement natural waters i ...
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Journal articleEnvironmental science & technology · August 2020
Hexavalent chromium (Cr(VI)) is known to occur naturally in shallow oxic groundwater, typically from aquifers associated with mafic and ultramafic formations, but information on the occurrence of Cr(VI) in deep groundwater from large sedimentary basins is ...
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Journal articleFuel · July 15, 2020
The increased water consumption for hydraulic fracturing and the volume of wastewater generated from shale gas and tight oil exploration are major environmental challenges associated with unconventional energy development. Recycling of the flowback and pro ...
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Journal articleThe Science of the total environment · April 2020
Hexavalent chromium (Cr(VI)) is a groundwater contaminant that is potentially harmful to human health. Understanding the occurrence of Cr(VI) in groundwater resources is critical for evaluating its risks to human health. Here we report a large dataset (n = ...
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Journal articleThe Science of the total environment · April 2020
The worldwide expansion of shale gas production and increased use of hydraulic fracturing have raised public concerns about safety and risks of groundwater resources in shale gas extraction areas. China has the largest shale gas resources in the world, mos ...
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Journal articleEnvironmental science & technology · April 2020
The co-occurrence of contaminants in drinking water may pose enhanced risks to health beyond the effects of single contaminants. Here, we investigated the co-occurrence of four health-relevant redox-sensitive elements (U, As, V, and Cr) in 1494 groundwater ...
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Journal articleInternational Journal of Coal Geology · April 1, 2020
Coal ash is one of the largest industrial waste streams in the United States and contains elevated concentrations of hazardous elements that could pose environmental and human health risks. Due to the relatively high strontium concentrations in coal ash an ...
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Journal articleEnvironmental Science and Technology Letters · December 10, 2019
Lead (Pb) isotopes have been widely used to delineate Pb pollutants in the environment. Here, we present, for the first time, a systematic analysis of Pb isotopes in coal fly ash derived from coals from the three major coal-producing basins in the United S ...
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Journal articleEnvironmental Research Letters · December 4, 2019
The transition from coal to natural gas and renewables in the electricity sector and the rise of unconventional shale gas extraction are likely to affect water usage throughout the US. While new natural-gas power plants use less water than coal-fired power ...
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Journal articleThe Science of the total environment · October 2019
Coal combustion residuals (CCRs, also known as "coal ash") contain high concentrations of toxic and carcinogenic elements that can pose ecological and human health risks upon their release into the environment. About half of the CCRs that are generated ann ...
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Journal articleThe Science of the total environment · October 2019
Northwest India suffers from severe water scarcity issues due to a combination of over-exploitation and climate effects. Along with concerns over water availability, endemic water quality issues are critical and affect the usability of available water and ...
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Journal articleEnvironmental research · October 2019
Well water is the primary drinking source for nearly a quarter of North Carolina residents. Many communities across the state have been concerned about their well water quality and inorganic contamination. The "Well Empowered" study worked alongside a comm ...
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Journal articleEnvironmental science & technology · October 2019
The implementation of chlorine disinfection in low-income countries reduces the risk of waterborne illness but initiates exposure to disinfection byproducts (DBPs). Like high-income countries, low-income countries typically are adopting regulations focusin ...
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Journal articleEnvironmental science & technology · August 2019
Geochemical data from 40 water wells were used to examine the occurrence and sources of radium (Ra) in groundwater associated with three oil fields in California (Fruitvale, Lost Hills, South Belridge). 226Ra+228Ra activities (range = ...
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Journal articleEnviron Epigenet · July 2019
Cadmium (Cd) is a ubiquitous environmental pollutant associated with a wide range of health outcomes including cancer. However, obscure exposure sources often hinder prevention efforts. Further, although epigenetic mechanisms are suspected to link these as ...
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Journal articleGeohealth · April 1, 2019
Public trust in science, effective science communication, and rapid and constructive response to authors about their submissions are of paramount importance to the scientific enterprise and indeed to society itself. This is really at the heart of peer revi ...
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Journal articleApplied Geochemistry · November 1, 2018
Chemical and isotopic data for water co-extracted with hydrocarbons in oil and gas fields are commonly used to examine the source of the formation water and possible impacts on groundwater in areas of oil and gas development. Understanding the geochemical ...
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Journal articleScience advances · August 2018
Unconventional oil and gas exploration in the United States has experienced a period of rapid growth, followed by several years of limited production due to falling and low natural gas and oil prices. Throughout this transition, the water use for hydraulic ...
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Journal articleEnvironmental engineering science · July 2018
The chemical composition of coal ash is highly heterogeneous and dependent on the origin of the source coal, combustion parameters, and type and configuration of air pollution control devices. This heterogeneity results in uncertainty in the evaluation of ...
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Journal articleEnvironmental Science and Technology Letters · June 12, 2018
Groundwater overexploitation has caused massive groundwater depletion and raised concerns for water and food security in India. Groundwater in India also suffers from multiple water quality issues such as arsenic and fluoride contamination that pose human ...
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Journal articleApplied Geochemistry · April 1, 2018
Radium isotopes and water-rock interaction were evaluated in an aquifer storage and recovery (ASR) pilot study conducted in 2010–2011 in Minnesota (USA) in order to identify mechanisms governing Ra activities when low-Ra water is recharged into a sandstone ...
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Journal articleApplied Geochemistry · March 1, 2018
Oil sands operations in Alberta, Canada generate large volumes (>840 × 106 m3) of oil sands process-affected water (OSPW) that contains contaminants that are toxic to aquatic life. OSPW is stored in open tailings ponds and leakage fro ...
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Journal articleGround water · March 2018
Enhanced production of unconventional hydrocarbons in the United States has driven interest in natural gas development globally, but simultaneously raised concerns regarding water quantity and quality impacts associated with hydrocarbon extraction. We cond ...
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Journal articleGround water · March 2018
Environmental concerns regarding the potential for drinking water contamination in shallow aquifers have accompanied unconventional energy development in the northern Appalachian Basin. These activities have also raised several critical questions about the ...
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Journal articleGround water · March 2018
Horizontal drilling and hydraulic fracturing have enhanced unconventional hydrocarbon recovery but raised environmental concerns related to water quality. Because most basins targeted for shale-gas development in the USA have histories of both active and l ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · December 2017
Synthesizing published data, we provide a quantitative summary of the global biogeochemical cycle of vanadium (V), including both human-derived and natural fluxes. Through mining of V ores (130 × 109 g V/y) and extraction and combustion of fossi ...
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Journal articleEnvironmental science & technology · November 2017
Molybdenum (Mo) is an essential trace nutrient but has negative health effects at high concentrations. Groundwater typically has low Mo (<2 μg/L), and elevated levels are associated with anthropogenic contamination, although geogenic sources have also been ...
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Journal articleAnnual Review of Environment and Resources · October 17, 2017
The extraction of unconventional oil and gas-from shale rocks, tight sand, and coalbed formations-is shifting the geographies of fossil fuel production, with complex consequences. Following Jackson et al.'s (1) natural science survey of the environmental c ...
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Journal articleThe Science of the total environment · October 2017
This study examined the relation between fluoride (F-) concentrations in fingernail clippings and urine and the prevalence and severity of enamel fluorosis (EF) among Ethiopian Rift Valley populations exposed to high levels of F- in d ...
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Journal articleWater research · October 2017
Coastal utilities exploiting mildly saline groundwater (<150 mg/L chloride) may be challenged by disinfection byproduct (DBP) formation, a concern likely to increase with sea-level rise. Groundwater from North Carolina coastal aquifers is characterized by ...
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Journal articleApplied Geochemistry · September 1, 2017
The geochemical and isotopic (strontium, boron, radium, oxygen, hydrogen) variations of geothermal waters from five different regions in Morocco were investigated in order to evaluate the sources of solutes and the mechanisms of water-rock interaction. Dur ...
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Journal articleGeochimica Et Cosmochimica Acta · July 1, 2017
Since naturally occurring methane and saline groundwater are nearly ubiquitous in many sedimentary basins, delineating the effects of anthropogenic contamination sources is a major challenge for evaluating the impact of unconventional shale gas development ...
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Journal articleBMC Public Health · April 24, 2017
BACKGROUND: Cadmium (Cd), lead (Pb) and arsenic (As) are common environmental contaminants that have been associated with lower birthweight. Although some essential metals may mitigate exposure, data are inconsistent. This study sought to evaluate the rela ...
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Journal articleThe Science of the total environment · January 2017
The management and disposal of flowback and produced waters (FP water) is one of the greatest challenges associated with unconventional oil and gas development. The development and production of unconventional natural gas and oil is projected to increase i ...
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Journal articleEnvironmental Science and Technology Letters · December 13, 2016
Hexavalent chromium [Cr(VI)] is a known pulmonary carcinogen. Recent detection of Cr(VI) in drinking water wells in North Carolina has raised public concern about contamination of drinking water wells by nearby coal ash ponds. Here we report, for the first ...
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Journal articleEnvironmental science. Processes & impacts · November 2016
Mercury (Hg) associated with coal ash is an environmental concern, particularly if the release of coal ash to the environment is associated with the conversion of inorganic Hg to methylmercury (MeHg), a bioaccumulative form of Hg that is produced by anaero ...
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Journal articleEnvironmental science & technology · June 2016
Coal combustion residuals (CCRs), the largest industrial waste in the United States, are mainly stored in surface impoundments and landfills. Here, we examine the geochemistry of seeps and surface water from seven sites and shallow groundwater from 15 site ...
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Journal articleApplied Geochemistry · April 1, 2016
The unintended release of coal ash to the environment is a concern due to the enrichment of contaminants such as arsenic (As) and selenium (Se) in this solid waste material. Current risk assessments of coal ash disposal focus on pH as the primary driver of ...
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Journal articleEnvironmental science & technology · March 2016
Unconventional shale gas development holds promise for reducing the predominant consumption of coal and increasing the utilization of natural gas in China. While China possesses some of the most abundant technically recoverable shale gas resources in the w ...
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Journal articleWater Resources Research Institute News of the University of North Carolina · March 1, 2016
Coal combustion residuals (CCRs) released by permitted effluent streams partition to sediments and sediment pore waters where they accumulate to enriched levels in organisms at the base of the food chain. The objectives of this study were (1) to measure CC ...
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Journal articleGlobal Biogeochemical Cycles · February 1, 2016
This paper presents a revised and updated synthesis of the biogeochemical cycle of boron at the Earth's surface, where the largest fluxes are associated with the injection of sea-salt aerosols to the atmosphere (1.44 Tg B/yr), production and combustion of ...
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Journal articleGeochimica Et Cosmochimica Acta · December 1, 2015
The last decade has seen a dramatic increase in domestic energy production from unconventional reservoirs. This energy boom has generated marked economic benefits, but simultaneously evoked significant concerns regarding the potential for drinking-water co ...
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Journal articleBMC Public Health · October 9, 2015
BACKGROUND: Cadmium (Cd), lead (Pb), mercury (Hg), and arsenic (As) exposure is ubiquitous and has been associated with higher risk of growth restriction and cardiometabolic and neurodevelopmental disorders. However, cost-efficient strategies to identify a ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · October 2015
Hundreds of organic chemicals are used during natural gas extraction via high-volume hydraulic fracturing (HVHF). However, it is unclear whether these chemicals, injected into deep shale horizons, reach shallow groundwater aquifers and affect local water q ...
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Journal articleEnvironmental Science and Technology Letters · September 15, 2015
We evaluated the overall water footprint of hydraulic fracturing of unconventional shale gas and oil throughout the United States based on integrated data from multiple database sources. We show that between 2005 and 2014, unconventional shale gas and oil ...
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Journal articleApplied Geochemistry · September 1, 2015
Unconventional natural gas development via horizontal drilling and hydraulic fracturing has greatly increased the supply of natural gas in the United States. However, the practice presents concerns about the possibility for impacts on shallow groundwater a ...
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Journal articleBMC Pharmacol Toxicol · July 15, 2015
BACKGROUND: Cadmium (Cd) is a ubiquitous and environmentally persistent toxic metal that has been implicated in neurotoxicity, carcinogenesis and obesity and essential metals including zinc (Zn) and iron (Fe) may alter these outcomes. However mechanisms un ...
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Journal articleThe Science of the total environment · April 2015
Arsenic (As) contamination of groundwater drinking sources was investigated in the Mekong Delta, Vietnam in order to assess the occurrence of As in the groundwater, and the magnitude of As exposure of local residents through measurements of As in toenails ...
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Journal articleEarth and Planetary Science Letters · March 5, 2015
The boron isotopic composition of calcium carbonate skeletons is a promising proxy method for reconstructing paleo-ocean pH and atmospheric CO2 from the geological record. Although the boron isotope methodology has been used extensively over the ...
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Journal articleEnvironmental science & technology · February 2015
The expansion of unconventional shale gas and hydraulic fracturing has increased the volume of the oil and gas wastewater (OGW) generated in the U.S. Here we demonstrate that OGW from Marcellus and Fayetteville hydraulic fracturing flowback fluids and Appa ...
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Journal articleEnvironmental Earth Sciences · January 1, 2015
In the Ziz Basin, located in arid area in southeastern Morocco, surface waters are scarce and local populations are entirely dependent on groundwater resources for drinking and irrigation. In order to evaluate the main factors controlling the origin and sa ...
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Journal articleEnvironmental science & technology · December 2014
In the U.S., coal fired power plants produce over 136 million tons of coal combustion residuals (CCRs) annually. CCRs are enriched in toxic elements, and their leachates can have significant impacts on water quality. Here we report the boron and strontium ...
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Journal articleEnvironmental science & technology · November 2014
Identifying the geochemical fingerprints of fluids that return to the surface after high volume hydraulic fracturing of unconventional oil and gas reservoirs has important applications for assessing hydrocarbon resource recovery, environmental impacts, and ...
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Journal articleChemical Geology · October 29, 2014
The geochemistry of boron was investigated in the ice-covered lakes and glacier meltwater streams within Taylor and Wright Valley of the McMurdo Dry Valleys (MCM), Antarctica, in order to achieve a greater understanding of the source of boron to these aqua ...
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Journal articleSci Total Environ · October 15, 2014
This cross-sectional study explores the relationships between children's F(-) exposure from drinking groundwater and urinary F(-) concentrations, combined with dental fluorosis (DF) in the Main Ethiopian Rift (MER) Valley. We examined the DF prevalence and ...
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Journal articleEnvironmental science & technology · October 2014
The disposal and leaks of hydraulic fracturing wastewater (HFW) to the environment pose human health risks. Since HFW is typically characterized by elevated salinity, concerns have been raised whether the high bromide and iodide in HFW may promote the form ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · September 2014
Horizontal drilling and hydraulic fracturing have enhanced energy production but raised concerns about drinking-water contamination and other environmental impacts. Identifying the sources and mechanisms of contamination can help improve the environmental ...
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Journal articleSci Total Environ · August 1, 2014
Elevated level of fluoride (F(-)) in drinking water is a well-recognized risk factor of dental fluorosis (DF). While considering optimization of region-specific standards for F(-), it is reasonable, however, to consider how local diet, water sourcing pract ...
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Journal articleEnviron Geochem Health · August 2014
There is an increasing public awareness of the relatively new and expanded industrial barium uses which are potential sources of human exposure (e.g., a shale gas development that causes an increased awareness of environmental exposures to barium). However ...
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Journal articleEnvironmental science & technology · January 2014
Wastewaters generated during hydraulic fracturing of the Marcellus Shale typically contain high concentrations of salts, naturally occurring radioactive material (NORM), and metals, such as barium, that pose environmental and public health risks upon inade ...
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Journal articleEnvironmental science & technology · January 2014
The rapid rise of shale gas development through horizontal drilling and high volume hydraulic fracturing has expanded the extraction of hydrocarbon resources in the U.S. The rise of shale gas development has triggered an intense public debate regarding the ...
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Journal articleJ Expo Sci Environ Epidemiol · 2014
Arsenic (As) contamination of drinking water is a worldwide phenomenon whose effect among vulnerable and rural communities in the Rift Valley of Ethiopia in eastern Africa is not well studied. This study examines As exposure and bioaccumulation from drinki ...
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Journal articleEnvironmental science & technology · December 2013
Selenium (Se) in coal ash spills poses a threat to adjacent ecosystems because of its potential to mobilize and bioaccumulate in aquatic organisms. Given that the mobility and bioavailability of Se is controlled by its valence states, we aimed to define Se ...
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Journal articleChemical Geology · November 4, 2013
In this study we make the first attempt to inter-calibrate boron isotope (δ11B) measurements on marine biogenic carbonates measured by four different laboratories, each using a different analytical technique. The importance of such calibrations ...
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Journal articleApplied Geochemistry · November 1, 2013
Salinization in groundwater systems can induce water-rock interaction, including the release of naturally-occurring trace elements of health significance such as radium (Ra), with possible implications for the usability of water resources in addition to th ...
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Journal articleWater research · October 2013
This study investigates the mechanisms of arsenic (As) and other naturally occurring contaminants (F(-), U, V, B, and Mo) mobilization from Quaternary sedimentary aquifers of the Main Ethiopian Rift (MER) and their enrichment in the local groundwater. The ...
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Journal articleEnvironmental science & technology · October 2013
The safe disposal of liquid wastes associated with oil and gas production in the United States is a major challenge given their large volumes and typically high levels of contaminants. In Pennsylvania, oil and gas wastewater is sometimes treated at brine t ...
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Journal articleEnvironmental science & technology · September 2013
Mountaintop mining (MTM) is the primary procedure for surface coal exploration within the central Appalachian region of the eastern United States, and it is known to contaminate streams in local watersheds. In this study, we measured the chemical and isoto ...
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Journal articleApplied Geochemistry · August 1, 2013
Exploration of unconventional natural gas reservoirs such as impermeable shale basins through the use of horizontal drilling and hydraulic fracturing has changed the energy landscape in the USA providing a vast new energy source. The accelerated production ...
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Journal articleApplied Geochemistry · July 1, 2013
In the arid sub-Saharan of southern Morocco, groundwater salinization poses a direct threat for agricultural production in six oases' basins that are irrigated by water imported from the High Atlas Mountains. Here the geospatial distribution of salinity is ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · July 2013
Horizontal drilling and hydraulic fracturing are transforming energy production, but their potential environmental effects remain controversial. We analyzed 141 drinking water wells across the Appalachian Plateaus physiographic province of northeastern Pen ...
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Journal articleEnvironmental science & technology · February 2013
The Tennessee Valley Authority Kingston coal ash spill in December 2008 deposited approximately 4.1 million m(3) of fly ash and bottom ash into the Emory and Clinch River system (Harriman, Tennessee, U.S.A.). The objective of this study was to investigate ...
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Journal articleEnvironmental science & technology · February 2013
Mercury stable isotope abundances were used to trace transport of Hg-impacted river sediment near a coal ash spill at Harriman, Tennessee, USA. δ(202)Hg values for Kingston coal ash released into the Emory River in 2008 are significantly negative (-1.78 ± ...
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Journal article · January 1, 2013
This chapter provides an overview of global salinization phenomena and investigates the different mechanisms and geochemical processes that are associated with salinization. The overview includes salinization of rivers, lakes, and groundwater from differen ...
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Journal articleChemical Geology · December 12, 2012
Water-rock interaction in sandstone aquifers can potentially mobilize U-and Th-series radionuclides, resulting in elevated levels of radioactive constituents such as radium (Ra) in groundwater. Previous studies have delineated the sources of Ra in groundwa ...
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Journal articleEnviron Int · August 2012
This study aims to assess the link between fluoride content in groundwater and its impact on dental health in rural communities of the Ethiopian Rift. A total of 148 water samples were collected from two drainage basins within the Main Ethiopian Rift (MER) ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · July 2012
The debate surrounding the safety of shale gas development in the Appalachian Basin has generated increased awareness of drinking water quality in rural communities. Concerns include the potential for migration of stray gas, metal-rich formation brines, an ...
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Journal articleJournal of Hydrology · May 17, 2012
Groundwater in many arid basins, particularly in developing countries, is the only available water resource that sustains local communities. Yet, information on the basic hydrological parameters and the sustainability of the groundwater exploitation are of ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · December 2011
Mountaintop mining is the dominant form of coal mining and the largest driver of land cover change in the central Appalachians. The waste rock from these surface mines is disposed of in the adjacent river valleys, leading to a burial of headwater streams a ...
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Journal articleHydrogeology Journal · August 1, 2011
The natural and pumping-induced controls on groundwater salinization in the coastal aquifers of North Carolina, USA, and the implications for the performance of a reverse osmosis (RO) desalination plant have been investigated. Since installation of the wel ...
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Journal articleApplied Geochemistry · August 1, 2011
The Willcox Basin is a hydrologically closed basin in semi-arid southeastern Arizona (USA) and, like many other alluvial basins in the southwestern USA, is characterized by oxic, near-neutral to slightly basic groundwater containing naturally elevated leve ...
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Journal articleProceedings of the National Academy of Sciences of the United States of America · May 2011
Directional drilling and hydraulic-fracturing technologies are dramatically increasing natural-gas extraction. In aquifers overlying the Marcellus and Utica shale formations of northeastern Pennsylvania and upstate New York, we document systematic evidence ...
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Journal articleClimatic Change · February 1, 2011
Through an examination of global climate change models combined with hydrological data on deteriorating water quality in the Middle East and North Africa (MENA), we elucidate the ways in which the MENA countries are vulnerable to climate-induced impacts on ...
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Journal articleWater Rock Interaction Proceedings of the 13th International Conference on Water Rock Interaction Wri 13 · December 1, 2010
Radiocarbon dating of groundwater has been a major tool for assessing the residence time of groundwater. Several models have been proposed to quantify carbonate dissolution in groundwater system in attempts to correct for "dead carbon". Here I propose usin ...
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Journal articleWater Rock Interaction Proceedings of the 13th International Conference on Water Rock Interaction Wri 13 · December 1, 2010
We present new 87Sr/ 86Sr ratios in groundwater from Proterozoic and Cambrian sandstone aquifers of southeastern Minnesota (USA), emphasizing the Mt. Simon aquifer. In Mt. Simon waters, 87Sr/ 86Sr ranges from 0.7 ...
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Journal articleEnviron Sci & Technol · November 2010
A year and a half investigation of the environmental impacts of the Tennessee Valley Authority (TVA) coal ash spill in Kingston, Tennessee has revealed that leachable coal ash contaminants (LCACs), particularly arsenic, selenium, boron, strontium, and bari ...
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Journal articleJournal of Hydrology · December 30, 2009
Groundwater resources in the Tadla basin stem from surface water recharge and different groundwater inflows, forming a multilayered aquifer system, which hosts one of Morocco's most important groundwater reservoirs. The hydrodynamic infrastructure; i.e. th ...
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Journal articleEnviron Sci Technol · August 15, 2009
An investigation of the potential environmental and health impacts in the immediate aftermath of one of the largest coal ash spills in U.S. history at the Tennessee Valley Authority (TVA) Kingston coal-burning power plant has revealed three major findings. ...
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Journal articleChemical Geology · March 30, 2009
Naturally-occurring radionuclides (uranium, radium, and radon), major dissolved constituents, and trace elements were investigated in fresh groundwater in 117 wells in fractured crystalline rocks from the Piedmont region (North Carolina, USA). Chemical var ...
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Journal articleEnviron Sci & Technol · 2009
High levels of naturally occurring and carcinogenic radium isotopes have been measured in low-saline and oxic groundwater from the Rum Group of the Disi sandstone aquifer in Jordan. The combined 228Ra and 226Ra activities are up to 2000% higher than intern ...
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Journal articleLimnology and Oceanography · January 1, 2009
We investigated the Ra isotope quartet in order to quantify the discharge of saline groundwater into a freshwater lake. The activities of 226Ra, 228Ra, 223Ra, and 224Ra were measured in the Sea of Galilee, Israel ...
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Journal articleApplied Geochemistry · September 1, 2008
Estimation of Rn transfer from water to indoor air based on multi-day measurements may underestimate alpha exposure that occurs at short time scales in confined spaces, such as from showering, in houses with high Rn activities in the water supply. In order ...
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Journal articleEnvironmental science & technology · July 2008
A systematic measurement of ions and 2H/1H, 7Li/6Li, 11B/10B, 18O/ 16O, and 87Sr/86Sr isotopes in feed-waters, permeates, and brines from commercial reverse osmosis (RO) desalination plants in Israel (Ashkelon, Eilat, and Nitzana) and Cyprus (Larnaca) reve ...
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Journal articleJournal of Hydrology · May 15, 2008
Groundwater and surface water in Souss-Massa basin in the west-southern part of Morocco is characterized by a large variation in salinity, up to levels of 37 g L-1. The high salinity coupled with groundwater level decline pose serious problems f ...
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Journal articleApplied Geochemistry · May 1, 2007
The geochemistry and isotopic composition (H, O, S, Osulfate, C, Sr) of groundwater from the Nubian Sandstone (Kurnub Group) aquifer in the Negev, Israel, were investigated in an attempt to reconstruct the origin of the water and solutes, evalua ...
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Journal articleApplied Geochemistry · March 1, 2007
The chemical composition of groundwater in the Jordan Valley, along the section between the Sea of Galilee and the Dead Sea, is investigated in order to evaluate the origin of the groundwater resources and, in particular, to elucidate the role of deep brin ...
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Journal articleGeotimes · May 1, 2006
When the Chernobyl nuclear power plant exploded in 1986, a radioactive plume spread more than 100 kilometers from the plant, affecting thousands of people. Over time, radioactive particles worked their way into the groundwater of northern Ukraine, eventual ...
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Journal articleApplied Geochemistry · November 1, 2005
Recent geochemical and hydrological findings show that the water quality of the base flow of the Lower Jordan River, between the Sea of Galilee and the Dead Sea, is dependent upon the ratio between surface water flow and groundwater discharge. Using water ...
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Journal articleGround water · September 2005
Israel and the Palestinian Authority share the southern Mediterranean coastal aquifer. Long-term overexploitation in the Gaza Strip has resulted in a decreasing water table, accompanied by the degradation of its water quality. Due to high levels of salinit ...
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Journal articleJournal of environmental quality · May 2005
The flow rate of the Lower Jordan River has changed dramatically during the second half of the 20th century. The diversion of its major natural sources reduced its flow rate and led to drying events during the drought years of 2000 and 2001. Under these co ...
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Journal articleJournal of Hydrology · January 10, 2005
Differences in the impact of irrigation with freshwater versus wastewater on the underlying shallow groundwater quality were investigated in the Coastal Aquifer of Israel. Seven research boreholes were drilled to the top-most 3-5 m of the saturated zone (t ...
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Journal articleWater Resources Research · January 1, 2005
Salinization in coastal aquifers is a global phenomenon resulting from the overexploitation of scarce water resources. The Gaza Strip is one of the most severe cases of salinization, as accelerated degradation of the water quality endangers the present and ...
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Journal articleEuropean Environment · January 1, 2005
In 1998 the European Union (EU) revised its Drinking Water Directive, which is responsible for regulating the quality of water in the EU intended for human consumption. Specifically, the EU added a new standard for the element boron in drinking water (1 mg ...
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Journal articleJournal of environmental quality · July 2004
The Lower Jordan River is located in the semiarid area of the Jordan Valley, along the border between Israel and Jordan. The implementation of the water sections of the peace treaty between Israel and Jordan and the countries' commitment to improve the eco ...
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Journal articleGeochimica Et Cosmochimica Acta · May 1, 2004
The chemical and isotopic (87Sr/86Sr, δ11B, δ34Ssulfate, δ18Owater, δ15Nnitrate) compositions of water from the Lower Jordan River and its major tributaries ...
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Journal articleGeotimes · May 1, 2004
Within the past few decades, the water quality in many of the coastal aquifers along the Mediterranean Sea has rapidly degraded. Overexploitation of the groundwater basins, particularly during the tourist season, has resulted in the lowering of groundwater ...
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Journal articleDesalination · April 1, 2004
High levels of boron concentrations in water present a serious problem for domestic and agriculture utilizations. The recent EU drinking water directive defines an upper limit of 1 mgB/I. In addition, most crops are sensitive to boron levels >0.75 mg/1 in ...
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Journal articleWater Resources Research · March 14, 2002
[1] The chemical and isotope (11B/10B, 87Sr/86Sr, 18O/16O, 2H/H, 13C/12C, 14C, and 3He/3H) compositions of groundwater from ...
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Journal articleApplied Geochemistry · March 11, 2002
The combined chemical composition, B and Sr isotopes, and the basic geologic setting of geothermal systems from the Menderes Massif in western Turkey have been investigated to evaluate the origin of the dissolved constituents and mechanisms of water-rock i ...
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Journal articleWater Resources Research · 2002
[1] The chemical and isotope (11B/10B, 87Sr/86Sr, 18O/16O, 2H/H, 13C/12C, 14C, and 3He/3H) compositions of groundwater from the upper aquifer system of the Salinas Valley in coastal central California were investigated in order to delineate the origin and ...
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Journal articleWater Resources Research · June 26, 2001
Boron, Cl-, and Br- concentrations and boron isotopic compositions (δ11B) were used to provide insight into the sources and water-sediment interactions of fossil water in a thick nonfractured aquitard system in Saskatchewan ...
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Journal articleGround water · March 2001
One of the major problems in the lower Jordan Valley is the increasing salinization (i.e., chloride content) of local ground water. The high levels of salinity limit the utilization of ground water for both domestic and agriculture applications. This joint ...
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Journal articleRadiocarbon · January 1, 2001
Saline groundwaters from the Israeli coastal aquifer were analyzed for their radiocarbon and tritium content to assess the rate of seawater penetration. The low 14C values (28-88 pMC versus 100-117 pMC in seawater) imply an apparent non-recent s ...
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Journal articleChemical Geology · February 1, 2000
The Br/Cl, Li/Cl and B/Cl ratios and boron isotope compositions of hypersaline pore fluids from DSDP Sites 372 and 374 were measured in an attempt to evaluate the origin of the brines. In Site 374 the relationships between the Cl concentrations (up to 5000 ...
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Journal articleActa Hydrochimica et Hydrobiologica · 1999
The boron isotopic compositions of common synthetic boron products, municipal wastewaters from Switzerland, and three Swiss freshwater lakes were investigated. The δ11B values (δ11B values are normalized to the standard NIST SRM-951) of synthetic Na-borate ...
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Journal articleWater Resources Research · January 1, 1999
In order to identify the origin of the salinity and formation of saline plumes in the central part of the Mediterranean coastal aquifer of Israel, we determined the elemental and boron, strontium, and oxygen isotopic compositions of fresh and brackish grou ...
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Journal articleGeochimica Et Cosmochimica Acta · October 1, 1998
The origin of hypersaline brines from Urania and Bannock deep anoxic basins in the eastern Mediterranean Sea has been investigated by integrating geochemical data and boron isotopic ratios. Bottom brines from Urania basin have chloride contents up to 4200 ...
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Journal articleGround Water · January 1, 1998
To establish geochemical tools for tracing the origin of ground water contamination, we examined the variations of Cl/Br and Cl/F (weight) ratios in (1) domestic waste water from the Dan Region Sewage Reclamation Project and from reservoirs in the central ...
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Journal articleBiological trace element research · January 1998
The present study investigates the isotopic composition of anthropogenic boron (B) and its potential affects on the environment. The isotopic ratios of B in synthetic products from the main ores in the world have been measured by negative thermal ionizatio ...
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Journal articleAnalytical and bioanalytical chemistry · March 1996
A technique for precise boron isotope ratio measurements with a high detection power has been developed by negative thermal ionization mass spectrometry (NTIMS). Relative standard deviations in the range of 0.03-0.3% have been obtained for the determinatio ...
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Journal articleJournal of Contaminant Hydrology · January 1, 1996
Long-term monitoring of the chemical composition of recharge sewage effluent and associated contaminated groundwater from the Dan Region Sewage Reclamation Project shows, after 16 years of recharge operation, the presence of a distinct saline plume (up to ...
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Journal articleChemical Geology · February 1, 1995
The general chemistry and boron isotope composition were investigated in fresh waters and hypersaline brines from the Qaidam Basin, northern Qinghai-Xizang (Tibet) Plateau, China. This basin is a large, tectonically active system, isolated from the ocean a ...
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Journal articleAnalyst · January 1, 1995
Thermal ionization mass spectrometry in the positive or negative ionization mode can be used for precise isotope ratio determinations of most elements. The preferably farmed ions are M+, M- and MOx- (x = 1-4). R ...
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Journal articleEarth and Planetary Science Letters · January 1, 1994
Re-examination of interstitial waters from sixteen Mediterranean DSDP sites reveals that the high salinity values of these waters (up to 350 g/l) do not reflect dissolution of underlying evaporites, but are rather related to Miocene evaporated sea water tr ...
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Journal articleJournal of Hydrology · January 1, 1994
A boron isotope study was carried out on groundwaters from the northern Rift Valley, Israel. The relatively high salinity (18 000 mgCl l-1), boron content (3.9 mg l-1), and δ11 B value (44‰) and the low B/Cl ratios of the s ...
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Journal articleJournal of Hydrology · January 1, 1994
One of the major causes for the deterioration of water quality bearing heavily on the water crisis in Israel is the ongoing contamination of its water resources by saline water bodies. The present paper reviews the geochemical processes forming saline wate ...
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Journal articleJournal of Hydrology · January 1, 1994
The formation and development of a salt plume (salinity up to 800 mg Cl 1-1) in the inner part of the Coastal Plain aquifer of Israel is analyzed. Massive groundwater exploitation during the 1950s caused a large drop in the water level and forma ...
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Journal articleIsrael Journal of Earth Sciences · January 1, 1994
Boron isotope composition and elemental boron have been determined by negative thermal ionization mass spectrometry techniques in oil field brines from the Mediterranean Coastal Plain of Israel. The brines are classified into two groups: 1) The Heletz brin ...
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Journal articleMarine Geology · January 1, 1993
Reexamination of data on hypersaline bottom brines from the deep anoxic Tyro and Bannock basins in the Eastern Mediterranean reveals that despite their similar chlorinity (6.0 mole/kg H2O) their chemical composition is significantly different. T ...
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Journal articleGeology · January 1, 1992
Examination of boron isotopes, elemental B, Br, and Li in brines, and coprecipitated salts during fractional evaporation of sea water shows that Br, Li, and B in the evaporated sea water have lower concentrations than expected, as determined from mass-bala ...
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Journal articleGeology · 1992
Examination of boron isotopes, elemental B, Br, and Li in brines, and coprecipitated salts during fractional evaporation of sea water shows that Br, Li, and B in the evaporated sea water have lower concentrations than expected, as determined from mass-bala ...
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Journal articleGeology · 1992
Examination of boron isotopes, elemental B, Br, and Li in brines, and coprecipitated salts during fractional evaporation of sea water shows that Br, Li, and B in the evaporated sea water have lower concentrations than expected, as determined from mass-bala ...
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Journal articleGeochimica Et Cosmochimica Acta · January 1, 1991
The abundances and isotopic composition of boron in modern, biogenic calcareous skeletons from the Gulf of Elat, Israel, the Great Barrier Reef, Australia, and in deep-sea sediments have been examined by negative thermal-ionization mass spectrometry. The s ...
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Journal articleGeochimica Et Cosmochimica Acta · January 1, 1991
Boron isotope geochemistry has been investigated in brines, groundwaters, and sediments from the modern Australian salt lakes of Victoria, South Australia, and Western Australia by applying negative thermal-ionization mass spectrometry techniques. The geoc ...
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Journal articleGeochimica Et Cosmochimica Acta · January 1, 1991
A boron isotope study combined with analyses of elemental boron, lithium, and chlorine is used to suggest that brines from the Dead Sea and on-shore hypersaline thermal springs (Hamme Yesha, Hamme Zohar, and Hamme Mazor) are the products of interaction of ...
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Journal articleChemical Geology Isotope Geoscience Section · September 25, 1989
We present a new, simple technique for the rapid and precise determination of boron (11B 10B) and chlorine (37Cl 35Cl) isotopic compositions in some natural materials (e.g., seawater, hypersaline brines, groundwa ...
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Journal articleChemical Geology Isotope Geoscience Section · August 20, 1987
Isotopic analysis of oxygen in several coexisting phases has two complementary aspects: (a) the analysis of two or more cogenetic phases may yield information about prevailing conditions at definite points in time assuming equilibrium fractionation; and (b ...
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