Preparation of diisononyl adipate in a solvent-free system via an immobilized lipase-catalyzed esterification
-
Add time:08/06/2019 Source:sciencedirect.com
Diisononyl adipate is a plasticizer which has excellent property of low temperature resistance and is permitted in food contact materials. In this study, diisononyl adipate was synthesized from adipic acid and isononyl alcohol in a solvent-free system via immobilized lipase-catalyzed esterification. Liquid Eversa lipase from Thermomyces lanuginosus was immobilized on Lewatit VP OC 1600 carrier. The effects of temperature, substrate molar ratio, water activity of enzyme, vacuum, and enzyme loading on the reaction efficiency were investigated. Application of vacuum played a key role to achieve a 100% conversion. The optimal temperature, molar ratio (adipic acid to isononyl alcohol), water activity of enzyme, vacuum were 50 °C, 1:3, 0.75, 13.3 kPa, and 10% (based on weight of total substrate). Under these conditions, 100% conversion was achieved within 6 h.
We also recommend Trading Suppliers and Manufacturers of adipate-adipic acid (cas 134886-82-1). Pls Click Website Link as below: cas 134886-82-1 suppliers
Prev:Influence of adipic acid on the speciation of Eu(III): Review of thermodynamic data in NaCl and NaClO4 media, and a new determination of Eu-adipate complexation constant in 0.5 mol·kgw−1 NaClO4 medium by time-resolved luminescence spectroscopy
Next:Synthesis of diethylhexyl adipate by Candida antarctica lipase-catalyzed esterification) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Site-directed mutation to improve the enzymatic activity of 5-carboxy-2-pentenoyl-CoA reductase for enhancing adipic acid biosynthesis08/08/2019
- Synthesis of diethylhexyl adipate by Candida antarctica lipase-catalyzed esterification08/07/2019
- Influence of adipic acid on the speciation of Eu(III): Review of thermodynamic data in NaCl and NaClO4 media, and a new determination of Eu-adipate complexation constant in 0.5 mol·kgw−1 NaClO4 medium by time-resolved luminescence spectroscopy08/05/2019
- Metabolic engineering of Escherichia coli for producing adipic acid through the reverse adipate-degradation pathway08/04/2019
-
Health and Chemical more >


