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A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel

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A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel. / Rahim, S.A.N.M.; Lee, C.S.; Abnisa, F. et al.
In: Science of the Total Environment, Vol. 705, 135137, 25.02.2020.

Research output: Contribution to Journal/MagazineReview articlepeer-review

Harvard

Rahim, SANM, Lee, CS, Abnisa, F, Aroua, MK, Daud, WAW, Cognet, P & Pérès, Y 2020, 'A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel', Science of the Total Environment, vol. 705, 135137. https://doi.org/10.1016/j.scitotenv.2019.135137

APA

Rahim, S. A. N. M., Lee, C. S., Abnisa, F., Aroua, M. K., Daud, W. A. W., Cognet, P., & Pérès, Y. (2020). A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel. Science of the Total Environment, 705, Article 135137. https://doi.org/10.1016/j.scitotenv.2019.135137

Vancouver

Rahim SANM, Lee CS, Abnisa F, Aroua MK, Daud WAW, Cognet P et al. A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel. Science of the Total Environment. 2020 Feb 25;705:135137. Epub 2019 Nov 21. doi: 10.1016/j.scitotenv.2019.135137

Author

Rahim, S.A.N.M. ; Lee, C.S. ; Abnisa, F. et al. / A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel. In: Science of the Total Environment. 2020 ; Vol. 705.

Bibtex

@article{3cd7bebccbba4ff5aaf19fbc6b5a0438,
title = "A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel",
abstract = "Glycerol is a by-product produced from biodiesel, fatty acid, soap and bioethanol industries. Today, the value of glycerol is decreasing in the global market due to glycerol surplus, which primarily resulted from the speedy expansion of biodiesel producers around the world. Numerous studies have proposed ways of managing and treating glycerol, as well as converting it into value-added compounds. The electrochemical conversion method is preferred for this transformation due to its simplicity and hence, it is discussed in detail. Additionally, the factors that could affect the process mechanisms and products distribution in the electrochemical process, including electrodes materials, pH of electrolyte, applied potential, current density, temperature and additives are also thoroughly explained. Value-added compounds that can be produced from the electrochemical conversion of glycerol include glyceraldehyde, dihydroxyacetone, glycolic acid, glyceric acid, lactic acid, 1,2-propanediol, 1,3-propanediol, tartronic acid and mesoxalic acid. These compounds are found to have broad applications in cosmetics, pharmaceutical, food and polymer industries are also described. This review will be devoted to a comprehensive overview of the current scenario in the glycerol electrochemical conversion, the factors affecting the mechanism pathways, reaction rates, product selectivity and yield. Possible outcomes obtained from the process and their benefits to the industries are discussed. The utilization of solid acid catalysts as additives for future studies is also suggested.",
author = "S.A.N.M. Rahim and C.S. Lee and F. Abnisa and M.K. Aroua and W.A.W. Daud and P. Cognet and Y. P{\'e}r{\`e}s",
note = "Export Date: 6 January 2020",
year = "2020",
month = feb,
day = "25",
doi = "10.1016/j.scitotenv.2019.135137",
language = "English",
volume = "705",
journal = "Science of the Total Environment",
issn = "0048-9697",
publisher = "Elsevier Science B.V.",

}

RIS

TY - JOUR

T1 - A review of recent developments on kinetics parameters for glycerol electrochemical conversion – A by-product of biodiesel

AU - Rahim, S.A.N.M.

AU - Lee, C.S.

AU - Abnisa, F.

AU - Aroua, M.K.

AU - Daud, W.A.W.

AU - Cognet, P.

AU - Pérès, Y.

N1 - Export Date: 6 January 2020

PY - 2020/2/25

Y1 - 2020/2/25

N2 - Glycerol is a by-product produced from biodiesel, fatty acid, soap and bioethanol industries. Today, the value of glycerol is decreasing in the global market due to glycerol surplus, which primarily resulted from the speedy expansion of biodiesel producers around the world. Numerous studies have proposed ways of managing and treating glycerol, as well as converting it into value-added compounds. The electrochemical conversion method is preferred for this transformation due to its simplicity and hence, it is discussed in detail. Additionally, the factors that could affect the process mechanisms and products distribution in the electrochemical process, including electrodes materials, pH of electrolyte, applied potential, current density, temperature and additives are also thoroughly explained. Value-added compounds that can be produced from the electrochemical conversion of glycerol include glyceraldehyde, dihydroxyacetone, glycolic acid, glyceric acid, lactic acid, 1,2-propanediol, 1,3-propanediol, tartronic acid and mesoxalic acid. These compounds are found to have broad applications in cosmetics, pharmaceutical, food and polymer industries are also described. This review will be devoted to a comprehensive overview of the current scenario in the glycerol electrochemical conversion, the factors affecting the mechanism pathways, reaction rates, product selectivity and yield. Possible outcomes obtained from the process and their benefits to the industries are discussed. The utilization of solid acid catalysts as additives for future studies is also suggested.

AB - Glycerol is a by-product produced from biodiesel, fatty acid, soap and bioethanol industries. Today, the value of glycerol is decreasing in the global market due to glycerol surplus, which primarily resulted from the speedy expansion of biodiesel producers around the world. Numerous studies have proposed ways of managing and treating glycerol, as well as converting it into value-added compounds. The electrochemical conversion method is preferred for this transformation due to its simplicity and hence, it is discussed in detail. Additionally, the factors that could affect the process mechanisms and products distribution in the electrochemical process, including electrodes materials, pH of electrolyte, applied potential, current density, temperature and additives are also thoroughly explained. Value-added compounds that can be produced from the electrochemical conversion of glycerol include glyceraldehyde, dihydroxyacetone, glycolic acid, glyceric acid, lactic acid, 1,2-propanediol, 1,3-propanediol, tartronic acid and mesoxalic acid. These compounds are found to have broad applications in cosmetics, pharmaceutical, food and polymer industries are also described. This review will be devoted to a comprehensive overview of the current scenario in the glycerol electrochemical conversion, the factors affecting the mechanism pathways, reaction rates, product selectivity and yield. Possible outcomes obtained from the process and their benefits to the industries are discussed. The utilization of solid acid catalysts as additives for future studies is also suggested.

U2 - 10.1016/j.scitotenv.2019.135137

DO - 10.1016/j.scitotenv.2019.135137

M3 - Review article

VL - 705

JO - Science of the Total Environment

JF - Science of the Total Environment

SN - 0048-9697

M1 - 135137

ER -