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How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE

Publication ,  Conference
Mobley, ML; Yang, Y; Yanai, RD; Nelson, KA; Bacon, AR; Heine, PR; Richter, DD
Published in: Soil Science Society of America Journal
January 1, 2019

Quantifying rates of change in soil carbon and nutrients is essential to understanding the global carbon cycle as well as to guiding local management decisions. However, change in soils can be nonlinear, difficult to detect, and dependent on the depth of soil examined. The purpose of this study was to demonstrate how to quantify uncertainty in detection of soil change, which has major implications for the design of soil monitoring projects. We analyzed soils collected over five decades from a long-term soil-ecosystem experiment in the South Carolina Piedmont of the United States. We estimated the minimum detectable change (MDC) using a dataset of soil carbon, nitrogen, calcium, magnesium, and potassium concentrations at four soil depths (0-7.5, 7.5-15, 15-35, and 35-60 cm). Changes over time in the log-transformed concentration at each soil depth were fit with one of three response shapes (linear, exponential, and quadratic) with the best model fit determined by a corrected AIC. The MDC analyses were conducted using repeated-measures models. For soil depths in which elemental change was quadratic, we conducted MDC analyses separately on the decreasing and increasing limbs. We also used paired t tests to analyze the MDCs based on only the first and last sample dates. Greater sampling intensity was needed to detect equivalent proportional changes in elements at intermediate depths than at shallower or deeper depths. Our study demonstrates the importance of considering the pattern and rate of the expected change, and how that may vary by element and depth, when designing and evaluating soil monitoring studies.

Duke Scholars

Published In

Soil Science Society of America Journal

DOI

EISSN

1435-0661

ISSN

0361-5995

Publication Date

January 1, 2019

Volume

83

Start / End Page

S133 / S140

Related Subject Headings

  • Agronomy & Agriculture
  • 41 Environmental sciences
  • 31 Biological sciences
  • 30 Agricultural, veterinary and food sciences
  • 07 Agricultural and Veterinary Sciences
  • 06 Biological Sciences
  • 05 Environmental Sciences
 

Citation

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Mobley, M. L., Yang, Y., Yanai, R. D., Nelson, K. A., Bacon, A. R., Heine, P. R., & Richter, D. D. (2019). How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE. In Soil Science Society of America Journal (Vol. 83, pp. S133–S140). https://doi.org/10.2136/sssaj2018.09.0335
Mobley, M. L., Y. Yang, R. D. Yanai, K. A. Nelson, A. R. Bacon, P. R. Heine, and D. D. Richter. “How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE.” In Soil Science Society of America Journal, 83:S133–40, 2019. https://doi.org/10.2136/sssaj2018.09.0335.
Mobley ML, Yang Y, Yanai RD, Nelson KA, Bacon AR, Heine PR, et al. How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE. In: Soil Science Society of America Journal. 2019. p. S133–40.
Mobley, M. L., et al. “How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE.” Soil Science Society of America Journal, vol. 83, 2019, pp. S133–40. Scopus, doi:10.2136/sssaj2018.09.0335.
Mobley ML, Yang Y, Yanai RD, Nelson KA, Bacon AR, Heine PR, Richter DD. How to estimate statistically detectable trends in a time series: A study of soil carbon and nutrient concentrations at the calhoun LTSE. Soil Science Society of America Journal. 2019. p. S133–S140.

Published In

Soil Science Society of America Journal

DOI

EISSN

1435-0661

ISSN

0361-5995

Publication Date

January 1, 2019

Volume

83

Start / End Page

S133 / S140

Related Subject Headings

  • Agronomy & Agriculture
  • 41 Environmental sciences
  • 31 Biological sciences
  • 30 Agricultural, veterinary and food sciences
  • 07 Agricultural and Veterinary Sciences
  • 06 Biological Sciences
  • 05 Environmental Sciences