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沸石负载金属氯化物上从生物质热解中选择性生产化学品。

Selective production of chemicals from biomass pyrolysis over metal chlorides supported on zeolite.

机构信息

College of Chemical Engineering and Materials Science, Zhejiang University of Technology, Hangzhou 310032, PR China.

出版信息

Bioresour Technol. 2013 Dec;149:341-5. doi: 10.1016/j.biortech.2013.09.096. Epub 2013 Sep 28.

Abstract

Direct biomass conversion into chemicals remains a great challenge because of the complexity of the compounds; hence, this process has attracted less attention than conversion into fuel. In this study, we propose a simple one-step method for converting bagasse into furfural (FF) and acetic acid (AC). In this method, bagasse pyrolysis over ZnCl2/HZSM-5 achieved a high FF and AC yield (58.10%) and a 1.01 FF/AC ratio, but a very low yield of medium-boiling point components. However, bagasse pyrolysis using HZSM-5 alone or ZnCl2 alone still remained large amounts of medium-boiling point components or high-boiling point components. The synergistic effect of HZSM-5 and ZnCl2, which combines pyrolysis, zeolite cracking, and Lewis acid-selective catalysis results in highly efficient bagasse conversion into FF and AC. Therefore, our study provides a novel, simple method for directly converting biomass into high-yield useful chemical.

摘要

由于化合物的复杂性,直接将生物质转化为化学品仍然是一个巨大的挑战;因此,与转化为燃料相比,这一过程受到的关注较少。在本研究中,我们提出了一种将蔗渣一步转化为糠醛(FF)和乙酸(AC)的简单方法。在该方法中,ZnCl2/HZSM-5 上的蔗渣热解可实现高 FF 和 AC 收率(58.10%)和 1.01 的 FF/AC 比,但中沸点成分的产率非常低。然而,单独使用 HZSM-5 或 ZnCl2 进行蔗渣热解仍会残留大量的中沸点成分或高沸点成分。HZSM-5 和 ZnCl2 的协同作用,结合热解、沸石裂化和路易斯酸选择性催化,可实现蔗渣向 FF 和 AC 的高效转化。因此,本研究为直接将生物质转化为高收率有用化学品提供了一种新颖、简单的方法。

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