Literature DB >> 27228384

Developing energy efficient lignin biomass processing - towards understanding mediator behaviour in ionic liquids.

Majd Eshtaya1, Andinet Ejigu2, Gill Stephens1, Darren A Walsh2, George Z Chen3, Anna K Croft1.   

Abstract

Environmental concerns have brought attention to the requirement for more efficient and renewable processes for chemicals production. Lignin is the second most abundant natural polymer, and might serve as a sustainable resource for manufacturing fuels and aromatic derivatives for the chemicals industry after being depolymerised. In this work, the mediator 2,2'-azino-bis(3-ethylbenthiazoline-6-sulfonic acid) diammonium salt (ABTS), commonly used with enzyme degradation systems, has been evaluated by means of cyclic voltammetry (CV) for enhancing the oxidation of the non-phenolic lignin model compound veratryl alcohol and three types of lignin (organosolv, Kraft and lignosulfonate) in the ionic liquid 1-ethyl-3-methylimidazolium ethyl sulfate, ([C2mim][C2SO4]). The presence of either veratryl alcohol or organosolv lignin increased the second oxidation peak of ABTS under select conditions, indicating the ABTS-mediated oxidation of these molecules at high potentials in [C2mim][C2SO4]. Furthermore, CV was applied as a quick and efficient way to explore the impact of water in the ABTS-mediated oxidation of both organosolv and lignosulfonate lignin. Higher catalytic efficiencies of ABTS were observed for lignosulfonate solutions either in sodium acetate buffer or when [C2mim][C2SO4] (15 v/v%) was present in the buffer solution, whilst there was no change found in the catalytic efficiency of ABTS in [C2mim][C2SO4]-lignosulfonate mixtures relative to ABTS alone. In contrast, organosolv showed an initial increase in oxidation, followed by a significant decrease on increasing the water content of a [C2mim][C2SO4] solution.

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Year:  2016        PMID: 27228384     DOI: 10.1039/c5fd00226e

Source DB:  PubMed          Journal:  Faraday Discuss        ISSN: 1359-6640            Impact factor:   4.008


  2 in total

1.  Sustainable Electrochemical Depolymerization of Lignin in Reusable Ionic Liquids.

Authors:  Tobias K F Dier; Daniel Rauber; Dan Durneata; Rolf Hempelmann; Dietrich A Volmer
Journal:  Sci Rep       Date:  2017-07-11       Impact factor: 4.379

2.  Molecular Mechanisms Underlying Inhibitory Binding of Alkylimidazolium Ionic Liquids to Laccase.

Authors:  Jianliang Sun; Hao Liu; Wenping Yang; Shicheng Chen; Shiyu Fu
Journal:  Molecules       Date:  2017-08-15       Impact factor: 4.411

  2 in total

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