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A decade development of lipase catalysed synthesis of acylglycerols using reactors: a systematic review

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A decade development of lipase catalysed synthesis of acylglycerols using reactors: a systematic review. / Abd Razak, Nurul Nadiah; Cognet, Patrick; Pérès, Yolande et al.
In: Reviews in Chemical Engineering, 19.04.2024.

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APA

Abd Razak, N. N., Cognet, P., Pérès, Y., Aroua, M. K., & Gew, L. T. (2024). A decade development of lipase catalysed synthesis of acylglycerols using reactors: a systematic review. Reviews in Chemical Engineering. Advance online publication. https://doi.org/10.1515/revce-2023-0050

Vancouver

Abd Razak NN, Cognet P, Pérès Y, Aroua MK, Gew LT. A decade development of lipase catalysed synthesis of acylglycerols using reactors: a systematic review. Reviews in Chemical Engineering. 2024 Apr 19. Epub 2024 Apr 19. doi: 10.1515/revce-2023-0050

Author

Abd Razak, Nurul Nadiah ; Cognet, Patrick ; Pérès, Yolande et al. / A decade development of lipase catalysed synthesis of acylglycerols using reactors : a systematic review. In: Reviews in Chemical Engineering. 2024.

Bibtex

@article{50c5267e90dc47c4a8afb9cc35b3ffd2,
title = "A decade development of lipase catalysed synthesis of acylglycerols using reactors: a systematic review",
abstract = "Glycerol esterification produces a variety of valuable chemicals and has been a subject of great interest in recent years. Lipase-catalysed synthesis of acylglycerols reactions have many potential applications, including in the production of structured lipids, biofuels and pharmaceuticals. It offers several benefits over traditional chemical methods, including higher selectivity, milder reaction conditions and increased sustainability. In this systematic review, we summarize 52 primary research of lipase catalysed synthesis of acylglycerol published from 2012 to 2022. Different types of reactions employed in the synthesis of acylglycerols using various lipases are thoroughly discussed. The use of lipase in as biocatalyst in the synthesis of acylglycerols is safe for consumption and sustainable as it can reduce the utilization of toxic and hazardous organic solvents and chemicals that cause harm to human health and the environment. This review serves as a reference for the research and development of acylglycerols using biocatalysts and reactors. It could be an interest to the food and pharmaceutical industries or individuals who are interested to explore this field. Several limitations associated with the overall research on production of acylglycerols are presented in the conclusion section.",
author = "{Abd Razak}, {Nurul Nadiah} and Patrick Cognet and Yolande P{\'e}r{\`e}s and Aroua, {Mohamed Kheireddine} and Gew, {Lai Ti}",
year = "2024",
month = apr,
day = "19",
doi = "10.1515/revce-2023-0050",
language = "English",
journal = "Reviews in Chemical Engineering",
issn = "0167-8299",
publisher = "Walter de Gruyter GmbH",

}

RIS

TY - JOUR

T1 - A decade development of lipase catalysed synthesis of acylglycerols using reactors

T2 - a systematic review

AU - Abd Razak, Nurul Nadiah

AU - Cognet, Patrick

AU - Pérès, Yolande

AU - Aroua, Mohamed Kheireddine

AU - Gew, Lai Ti

PY - 2024/4/19

Y1 - 2024/4/19

N2 - Glycerol esterification produces a variety of valuable chemicals and has been a subject of great interest in recent years. Lipase-catalysed synthesis of acylglycerols reactions have many potential applications, including in the production of structured lipids, biofuels and pharmaceuticals. It offers several benefits over traditional chemical methods, including higher selectivity, milder reaction conditions and increased sustainability. In this systematic review, we summarize 52 primary research of lipase catalysed synthesis of acylglycerol published from 2012 to 2022. Different types of reactions employed in the synthesis of acylglycerols using various lipases are thoroughly discussed. The use of lipase in as biocatalyst in the synthesis of acylglycerols is safe for consumption and sustainable as it can reduce the utilization of toxic and hazardous organic solvents and chemicals that cause harm to human health and the environment. This review serves as a reference for the research and development of acylglycerols using biocatalysts and reactors. It could be an interest to the food and pharmaceutical industries or individuals who are interested to explore this field. Several limitations associated with the overall research on production of acylglycerols are presented in the conclusion section.

AB - Glycerol esterification produces a variety of valuable chemicals and has been a subject of great interest in recent years. Lipase-catalysed synthesis of acylglycerols reactions have many potential applications, including in the production of structured lipids, biofuels and pharmaceuticals. It offers several benefits over traditional chemical methods, including higher selectivity, milder reaction conditions and increased sustainability. In this systematic review, we summarize 52 primary research of lipase catalysed synthesis of acylglycerol published from 2012 to 2022. Different types of reactions employed in the synthesis of acylglycerols using various lipases are thoroughly discussed. The use of lipase in as biocatalyst in the synthesis of acylglycerols is safe for consumption and sustainable as it can reduce the utilization of toxic and hazardous organic solvents and chemicals that cause harm to human health and the environment. This review serves as a reference for the research and development of acylglycerols using biocatalysts and reactors. It could be an interest to the food and pharmaceutical industries or individuals who are interested to explore this field. Several limitations associated with the overall research on production of acylglycerols are presented in the conclusion section.

U2 - 10.1515/revce-2023-0050

DO - 10.1515/revce-2023-0050

M3 - Journal article

JO - Reviews in Chemical Engineering

JF - Reviews in Chemical Engineering

SN - 0167-8299

ER -