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生物质羟基酸用于可持续电化学制氢的结构-反应性效应。

Structure-Reactivity Effects of Biomass-based Hydroxyacids for Sustainable Electrochemical Hydrogen Production.

机构信息

Department of Chemical Engineering, KTH Royal Institute of Technology, 100 44, Stockholm, Sweden.

Department of Chemistry, University of Warwick, Coventry, CV47AL, United Kingdom.

出版信息

ChemSusChem. 2021 Apr 22;14(8):1902-1912. doi: 10.1002/cssc.202100073. Epub 2021 Mar 3.

Abstract

Biomass electro-oxidation is a promising approach for the sustainable generation of H by electrolysis with simultaneous synthesis of value-added chemicals. In this work, the electro-oxidation of two structurally different organic hydroxyacids, lactic acid and gluconic acid, was studied comparatively to understand how the chemical structure of the hydroxyacid affects the electrochemical reactivity under various conditions. It was concluded that hydroxyacids such as gluconic acid, with a considerable density of C-OH groups, are highly reactive and promising for the sustainable generation of H by electrolysis at low potentials and high conversion rates (less than -0.15 V vs. Hg/HgO at 400 mA cm ) but with low selectivity to specific final products. In contrast, the lower reactivity of lactic acid did not enable H generation at very high conversion rates (<100 mA cm ), but the reaction was significantly more selective (64 % to pyruvic acid). This work shows the potential of biomass-based organic hydroxyacids for sustainable generation of H and highlights the importance of the chemical structure on the reactivity and selectivity of the electro-oxidation reactions.

摘要

生物质电氧化是一种很有前途的方法,可以通过电解同时合成有价值的化学品,从而可持续地产生 H。在这项工作中,比较研究了两种结构不同的有机羟基酸(乳酸和葡萄糖酸)的电氧化,以了解羟基酸的化学结构如何在各种条件下影响电化学反应性。研究得出的结论是,像葡萄糖酸这样具有相当密度的 C-OH 基团的羟基酸是高度反应性的,并且有望在低电位和高转化率(低于-0.15 V 对 Hg/HgO 在 400 mA cm)下通过电解可持续地产生 H,但对特定最终产物的选择性较低。相比之下,乳酸的反应性较低,无法在非常高的转化率(<100 mA cm)下产生 H,但反应的选择性显著提高(64%到丙酮酸)。这项工作展示了基于生物质的有机羟基酸在可持续产生 H 方面的潜力,并强调了化学结构对电氧化反应的反应性和选择性的重要性。

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