在固定床反应器中通过 SBA-15 和 ZSM-5 催化剂将木质素化合物愈创木酚转化为邻苯二酚

Vinay Shah, Uplabdhi Tyagi, Dinesh Kumar
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引用次数: 0

摘要

生物质转化为高附加值化学品,作为进一步合成商品化学品的工业平台分子,为科学家们打开了一扇新的窗口。生物质是一种木质纤维素化合物,需要进行技术开发,因为生物质是由线性、环状和芳香烃组成的复杂分子。木质素具有芳香性质,有利于生产酚类碳氢化合物。在这项研究中,在固定床催化反应器中,使用纯二氧化硅和氧化铝二氧化硅催化剂(如 SBA-15 和 ZSM-5)将木质素化合物愈创木酚转化为不同的芳香烃。SBA-15 材料在不同的老化时间下合成,从而提高了表面积和孔径,而 ZSM-5 则用 H3PO4 和 KOH 进行预处理,以改变其酸性强度。在没有催化剂的情况下,愈创木酚在 550 ℃ 时的最大转化率为 90.1%,SBA-15 (C) 在 550 ℃ 时的转化率为 97.33%,P/ZSM-5 在 550 ℃ 时的转化率为 95.33%,这表明催化剂有助于提高转化率,但这取决于催化剂的类型及其特性,如表面积、孔径和 Lews/Bronsted 酸强度。同样,由于 SBA-15 (C) 具有高表面积和大孔径,与其他催化剂相比,它对邻苯二酚的选择性最大。所得液体产品的 GCMS 分析包括二甲基苯酚、2-二甲氧基苯、2-乙基 5-甲基苯酚、邻苯二酚、乙炔基苯甲醚和 O-甲酚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Guaiacol, a model lignin compound, conversion to catechol over SBA-15 and ZSM-5 catalyst in a fixed bed reactor

Biomass conversion to value added chemicals to be used as industrial platform molecules for further synthesis of commodity chemicals has opened new window for scientists. Biomass is a lignocellulosic compound and it requires technological development since biomass is a complex molecule of linear, cyclic and aromatic hydrocarbons. Lignin being aromatic in nature can beneficial for the production of phenolic hydrocarbons. In this work conversion of Guaiacol, a model lignin compound to different aromatic hydrocarbon is performed over pure silica and alumina silica catalysts e.g. SBA-15and ZSM-5 in a fixed bed catalytic reactor. SBA-15 material was synthesized at different aging time leading to improvement in surface area and pore diameter whereas ZSM-5 was pre-treated with H3PO4 and KOH to modify their acidic strength. Maximum Guaiacol conversion in absence of catalyst was obtained aa 90.1 % at 550oC, 97.33 % at 550 °c in presence of SBA-15 (C) and 95.33 % in presence of P/ZSM-5, indicating the catalyst helps in enhancing the conversion, however depends on the type of catalysts and its properties like surface area, pore diameter and Lews/Bronsted acid strength. Similarly the selectivity of catechol was observed to be maximum with SBA-15 (C) as compared to other catalyst owing to its high surface area and large pore diameter. The GCMS analysis of the liquid product obtained includes Dimethyl phenol, 2-dimethoxy benzene, 2-ethyl,5-methyl phenol, catechol, Ethynylanisole and O-cresol

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来源期刊
CiteScore
8.40
自引率
0.00%
发文量
100
审稿时长
33 weeks
期刊介绍: The journal has a particular interest in publishing papers on the unique issues facing chemical engineering taking place in countries that are rich in resources but face specific technical and societal challenges, which require detailed knowledge of local conditions to address. Core topic areas are: Environmental process engineering • treatment and handling of waste and pollutants • the abatement of pollution, environmental process control • cleaner technologies • waste minimization • environmental chemical engineering • water treatment Reaction Engineering • modelling and simulation of reactors • transport phenomena within reacting systems • fluidization technology • reactor design Separation technologies • classic separations • novel separations Process and materials synthesis • novel synthesis of materials or processes, including but not limited to nanotechnology, ceramics, etc. Metallurgical process engineering and coal technology • novel developments related to the minerals beneficiation industry • coal technology Chemical engineering education • guides to good practice • novel approaches to learning • education beyond university.
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