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Removal of furan and phenolic compounds from simulated biomass hydrolysates by batch adsorption and continuous fixed-bed column adsorption methods

机译:分批吸附和连续固定床柱吸附法去除模拟生物质水解物中的呋喃和酚类化合物

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摘要

It has been proposed to remove all potential inhibitors and sulfuric acid in biomass hydrolysates generated from dilute-acid pretreatment of biomass, based on three steps of sugar purification process. This study focused on its first step in which furan and phenolic compounds were selectively removed from the simulated hydrolysates using activated charcoal. Batch adsorption experiments demonstrated that the affinity of activated charcoal for each component was highest in the order of vanillic acid, 4-hydroxybenzoic acid, furfural, acetic acid, sulfuric acid, and xylose. The affinity of activated charcoal for furan and phenolic compounds proved to be significantly higher than that of the other three components. Four separation strategies were conducted with a combination of batch adsorption and continuous fixed-bed column adsorption methods. It was observed that xylose loss was negligible with near complete removal of furan and phenolic compounds, when at least one fixed-bed column adsorption was implemented in the strategy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已经提出基于糖纯化过程的三个步骤,去除由生物质的稀酸预处理产生的生物质水解物中的所有潜在抑制剂和硫酸。这项研究的第一步是使用活性炭从模拟的水解产物中选择性去除呋喃和酚类化合物。分批吸附实验表明,活性炭对每种组分的亲和力最高,依次为香草酸,4-羟基苯甲酸,糠醛,乙酸,硫酸和木糖。事实证明,活性炭对呋喃和酚类化合物的亲和力明显高于其他三种组分。结合分批吸附和连续固定床柱吸附方法进行了四种分离策略。观察到,当在该策略中实施至少一个固定床色谱柱吸附时,几乎完全除去呋喃和酚类化合物的木糖损失可以忽略不计。 (C)2016 Elsevier Ltd.保留所有权利。

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