Sodium sulphide extraction of human keratin
Publication
, Journal Article
Wang, QQ; Zhang, L; Liu, J; Zhu, P; Jiang, ZN
Published in: Ferroelectrics
June 11, 2018
Sodium sulphide was used to dissolve the waste hair. The optimal reaction conditions were determined via single factor comparison experiments and orthogonal experiments. The results showed that the optimum conditions were as follows: the concentration of Na2S·9H2O was 60 g/L, the concentration of urea was 2 g/L, the concentration of sodium dodecyl sulfate was 10 g/L, the dissolving time was 120 min, and the melting temperature was 80°C. In this condition, the dissolution rate reached 92.29% and the extraction rate of keratin reached 62.98%. The results of TGA and FT-IR showed that there were no significant changes in the stability of keratin, and the special functional groups contained were the same as those of human hair.
Duke Scholars
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Published In
Ferroelectrics
DOI
EISSN
1563-5112
ISSN
0015-0193
Publication Date
June 11, 2018
Volume
529
Issue
1
Start / End Page
105 / 112
Related Subject Headings
- Applied Physics
- 5104 Condensed matter physics
- 3402 Inorganic chemistry
- 0303 Macromolecular and Materials Chemistry
- 0204 Condensed Matter Physics
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Wang, Q. Q., Zhang, L., Liu, J., Zhu, P., & Jiang, Z. N. (2018). Sodium sulphide extraction of human keratin. Ferroelectrics, 529(1), 105–112. https://doi.org/10.1080/00150193.2018.1458507
Wang, Q. Q., L. Zhang, J. Liu, P. Zhu, and Z. N. Jiang. “Sodium sulphide extraction of human keratin.” Ferroelectrics 529, no. 1 (June 11, 2018): 105–12. https://doi.org/10.1080/00150193.2018.1458507.
Wang QQ, Zhang L, Liu J, Zhu P, Jiang ZN. Sodium sulphide extraction of human keratin. Ferroelectrics. 2018 Jun 11;529(1):105–12.
Wang, Q. Q., et al. “Sodium sulphide extraction of human keratin.” Ferroelectrics, vol. 529, no. 1, June 2018, pp. 105–12. Scopus, doi:10.1080/00150193.2018.1458507.
Wang QQ, Zhang L, Liu J, Zhu P, Jiang ZN. Sodium sulphide extraction of human keratin. Ferroelectrics. 2018 Jun 11;529(1):105–112.
Published In
Ferroelectrics
DOI
EISSN
1563-5112
ISSN
0015-0193
Publication Date
June 11, 2018
Volume
529
Issue
1
Start / End Page
105 / 112
Related Subject Headings
- Applied Physics
- 5104 Condensed matter physics
- 3402 Inorganic chemistry
- 0303 Macromolecular and Materials Chemistry
- 0204 Condensed Matter Physics