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Eco-conception of Highly Salt-Tolerant Alkyl Ether Carboxylate Hydrotropes with a Glyceryl Spacer
Authors:Dr. Aurélien Herbinski  Dr. Estelle Illous  Dr. Estelle Métay  Jesus F. Ontiveros  Prof. Jean-Marie Aubry  Prof. Marc Lemaire
Affiliation:1. Univ. Lyon, Université Claude Bernard Lyon1, CNRS, INSA-Lyon, CPE-Lyon, Institut de Chimie et Biochimie Moléculaires et Supramoléculaires ICBMS, UMR 5246, Equipe CAtalyse, SYnthèse et ENvironnement (CASYEN), 43, bd du 11 novembre 1918, 69622 Villeurbanne cedex, France;2. Unité de Catalyse et Chimie du Solide, Université Lille, CNRS, Centrale Lille Université d'Artois, 59000 Lille, France
Abstract:New alkyl ether carboxylates with a glyceryl spacer instead of ethylene glycol units have been synthesised using environmentally friendly methodology. A cascade synthesis of acetalisation and hydrogenolysis was developed to obtain products containing an alkyl chain linked to a glycerol unit bearing a polar carboxylate head. These products were methylated by using trimethyl phosphate to observe the influence of a free or methoxylated alcohol on the physicochemical properties. Finally, saponification gave the carboxylate anionic group of the new hydrotropes. Studying the amphiphilicity, the tolerance to sodium and calcium ions, and the solubilising power of these bio-based ionic/nonionic hydrotropes has shown that they exhibit significantly improved application properties compared to similar petro-based hydrotropes.
Keywords:glyceryl spacer  hydrotrope  levulinic acid  reductive alkylation  salt-tolerance
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