Fatty Acids and their Derivatives as Renewable Platform Molecules for the Chemical Industry
Жирные кислоты и их производные как возобновляемые платформенные молекулы для химической промышленности
2021-02-22
SCID: 54.1/fk3466ga
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biocatalytic oleochemistryfatty ester reductionolefin metathesisoleochemistryrenewable feedstocks
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Abstract (AI)
Oils and fats of vegetable and animal origin remain an important renewable feedstock for the chemical industry. Their industrial use has increased during the last 10 years from 31 to 51 million tonnes annually. Remarkable achievements made in the field of oleochemistry in this timeframe are summarized herein, including the reduction of fatty esters to ethers, the selective oxidation and oxidative cleavage of C-C double bonds, the synthesis of alkyl-branched fatty compounds, the isomerizing hydroformylation and alkoxycarbonylation, and olefin metathesis. The use of oleochemicals for the synthesis of a great variety of polymeric materials has increased tremendously, too. In addition to lipases and phospholipases, other enzymes have found their way into biocatalytic oleochemistry. Important achievements have also generated new oil qualities in existing crop plants or by using microorganisms optimized by metabolic engineering.
Key Findings
1
Biocatalytic oleochemistry has expanded beyond lipases and phospholipases to include other enzymes.
2
Metabolic engineering has enabled the development of new oil qualities in crop plants and optimized microorganisms.
3
Oleochemical advances include fatty-ester reduction to ethers, selective double-bond oxidation and cleavage, alkyl branching, isomerizing hydroformylation, alkoxycarbonylation, and olefin metathesis.
4
Oleochemicals are increasingly used to produce a wide variety of polymeric materials.
5
Vegetable and animal oils remain important renewable chemical feedstocks, with industrial use increasing from 31 to 51 million tonnes annually over the last decade.
Research Object
Fatty acids and their derivatives from vegetable and animal oils and fats
Research Subject
Their conversion into chemicals and polymeric materials through oleochemical transformations, biocatalysis, and metabolic engineering
Publication Details
Publication Date
2021-02-22
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