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Volumn 34, Issue 9, 2011, Pages 1133-1142
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Kinetics and mechanism of the cutinase-catalyzed transesterification of oils in AOT reversed micellar system
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Author keywords
Biodiesel; Cutinase; Kinetic model; Reversed micelle; Transesterification
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Indexed keywords
ALCOHOL MOLECULES;
BIODIESEL PRODUCTION;
CONCENTRATION PROFILES;
CUTINASE;
ENZYMATIC TRANSESTERIFICATION;
ENZYME-SUBSTRATE COMPLEXES;
EXPERIMENTAL DATA;
FATTY ACID ALKYL ESTERS;
FATTY ACID METHYL ESTER;
FUSARIUM SOLANI PISI;
KINETIC MODEL;
KINETIC MODELS;
KINETICS AND MECHANISM;
MECHANISTIC SCHEME;
MICELLAR SYSTEMS;
MONOGLYCERIDES;
REACTION CONDITIONS;
REACTION STEPS;
REVERSED MICELLE;
SUBSTRATES CONCENTRATION;
SULFOSUCCINATE;
TRANSESTERIFICATION REACTION;
BATCH REACTORS;
BIODIESEL;
ESTERIFICATION;
ESTERS;
FATTY ACIDS;
GLYCEROL;
KINETIC THEORY;
KINETICS;
METHANOL;
MICELLES;
PARAFFINS;
SODIUM;
SUBSTRATES;
TRANSESTERIFICATION;
ENZYME INHIBITION;
BIODIESEL;
BIS(2 ETHYLHEXYL)SODIUM SULFOSUCCINATE;
CHEMICAL COMPOUND;
CUTINASE;
DIACYLGLYCEROL;
FATTY ACID ESTER;
GLYCEROL;
ISOOCTANE;
METHANOL;
MONOACYLGLYCEROL;
OCTANE;
OIL;
TRIACYLGLYCEROL;
TRIOLEIN;
UNCLASSIFIED DRUG;
ARTICLE;
BATCH REACTOR;
CATALYSIS;
CHEMICAL INTERACTION;
CHEMICAL REACTION KINETICS;
COMPUTER MODEL;
CONTROLLED STUDY;
ENZYME ACTIVITY;
ENZYME INHIBITION;
ENZYME KINETICS;
ENZYME SUBSTRATE COMPLEX;
FUSARIUM SOLANI;
MICROENCAPSULATION;
NONHUMAN;
PRIORITY JOURNAL;
REVERSE MICELLE;
SEPARATION TECHNIQUE;
TRANSESTERIFICATION;
BIOREACTORS;
CARBOXYLIC ESTER HYDROLASES;
CATALYSIS;
ENZYMES;
ESTERIFICATION;
ESTERS;
FUSARIUM;
GASOLINE;
GLYCEROL;
KINETICS;
METHANOL;
MICELLES;
OCTANES;
OILS;
SODIUM;
SUCCINATES;
TRIGLYCERIDES;
FUSARIUM SOLANI;
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EID: 81755172013
PISSN: 16157591
EISSN: 16157605
Source Type: Journal
DOI: 10.1007/s00449-011-0564-5 Document Type: Article |
Times cited : (10)
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References (25)
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