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Kinetic and mechanistic investigation of catalytic alkaline thermal treatment of xylan producing high purity H-2 with in-situ carbon capture

机译:用原位碳捕获产生高纯度H-2催化碱热处理的动力学和机械研究

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摘要

A novel biomass conversion pathway that integrates carbon capture and storage schemes has been investigated using hemicellulose as the biomass feedstock. The alkaline thermal treatment (ATT) produces high purity H-2 from biomass mixed with hydroxide and it can be considered as a bio-energy with carbon capture and storage (BECCS) technology, since the carbon in biomass becomes solid carbonates during the ATT reaction. In this study, in the presence of Ni catalyst, Group 1 and 2 hydroxides are employed to produce as high as 60 mmol H-2 (96.8% purity) from 1 gram of hemicellulose (xylan) feedstock with in situ carbon capture at mild conditions (i.e., atmospheric pressure and relatively low temperatures <= 773 K). Reaction pathways of hydrogen production in the ATT of hemicellulose are proposed via the investigation of the roles of each hydroxide and catalyst in the H-2 formation from hemicellulose. Along with the previous studies on glucose and cellulose, this research lays a foundation for future development of H-2 production from real biomass with carbon-neutral or possibly negative potential. (C) 2020 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:通过作为生物质原料的半纤维素研究了整合碳捕获和储存方案的新型生物量转化途径。碱性热处理(ATT)从与氢氧化物混合的生物质产生高纯度H-2,并且可以被认为是具有碳捕获和储存(BECCS)技术的生物能量,因为生物质中的碳在att反应过程中成为固体碳酸盐。 。在该研究中,在Ni催化剂存在下,使用基团1和2氢氧化物从6克半纤维素(XYLAN)原料中产生高达60mmol H-2(96.8%纯度),在温和条件下以原位碳捕获为原位碳捕获(即大气压和相对低的温度<= 773 k)。通过研究从半纤维素的H-2形成中的每种氢氧化物和催化剂的作用,提出了半纤维素在半纤维素中的反应途径。随着以前关于葡萄糖和纤维素的研究,该研究为未来的H-2生产从真实生物量产生了碳中性或可能负势的基础。 (c)2020朝鲜工业与工程化学学会。 elsevier b.v出版。保留所有权利。

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