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Catalytic conversion of cellulosic biomass to ethylene glycol: Effects of inorganic impurities in biomass

机译:纤维素生物质催化转化为乙二醇:生物质中无机杂质的影响

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摘要

The effects of typical inorganic impurities on the catalytic conversion of cellulose to ethylene glycol (EG) were investigated, and the mechanism of catalyst deactivation by certain impurities were clarified. It was found that most impurities did not affect the EG yield, but some non-neutral impurities or Ca and Fe ions greatly decreased the EG yield. Conditional experiments and catalyst characterization showed that some impurities changed the pH of the reaction solution and affected the cellulose hydrolysis rate; Ca and Fe cations reacted with tungstate ions and suppressed the retro-aldol condensation. To obtain a high EG yield, the pH of the reaction solution and the concentration of tungstate ions should be respectively adjusted to 5.0-6.0 and higher than 187 ppm. For raw biomass conversion, negative effects were eliminated by suitable pretreatments, and high EG yields comparable to those from pure cellulose were obtained. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究了典型无机杂质对纤维素催化转化为乙二醇(EG)的影响,阐明了某些杂质使催化剂失活的机理。发现大多数杂质不影响EG产率,但是一些非中性杂质或Ca和Fe离子大大降低了EG产率。条件实验和催化剂表征表明,一些杂质改变了反应溶液的pH值,影响了纤维素的水解速率。 Ca和Fe阳离子与钨酸盐离子反应,抑制了逆醛醇缩合。为了获得高的EG收率,应将反应溶液的pH和钨酸根离子的浓度分别调节至5.0-6.0和高于187ppm。对于原始生物质转化,通过适当的预处理消除了负面影响,并获得了与纯纤维素相当的高EG收率。 (C)2014 Elsevier Ltd.保留所有权利。

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