Intensified and safe ozonolysis of fatty acid methyl esters in liquid CO 2 in a continuous reactor

Author:

Lundin Michael D.1,Danby Andrew M.1,Akien Geoffrey R.1,Venkitasubramanian Padmesh2,Martin Kevin J.2,Busch Daryle H.13,Subramaniam Bala14

Affiliation:

1. Center for Environmentally Beneficial CatalysisUniversity of Kansas1501 Wakarusa DriveLawrence KS66047

2. Archer Daniels Midland (ADM) CompanyDecatur IL62521

3. Dept. of ChemistryUniversity of Kansas1251 Wescoe Hall DrLawrence KS66045

4. Dept. of Chemical and Petroleum EngineeringUniversity of Kansas1530 W. 15th StLawrence KS66045

Funder

National Science Foundation

Division of Chemical, Bioengineering, Environmental, and Transport Systems

Archer Daniels Midland

National Institute of Food and Agriculture

Publisher

Wiley

Subject

General Chemical Engineering,Environmental Engineering,Biotechnology

Reference16 articles.

1. Sustainable route to methyl-9-hydroxononanoate (polymer precursor) by oxidative cleavage of fatty acid methyl ester from rapeseed oil

2. Structures of ozonolysis products of methyl oleate obtained in a carboxylic acid medium;Nishikawa N;J Am Chem Soc.,1995

3. The production of biobased nonanal by ozonolysis of fatty acids

4. The Development of Continuous Process for Alkene Ozonolysis Based on Combined in Situ FTIR, Calorimetry, and Computational Chemistry

5. GoebelCG BrownAC OehlschlaegarHF RolfesRP.Inventors. Method of making azelaic acid. US Patent US2813113 1957.

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