首页> 外文期刊>International journal of hydrogen energy >Catalytic hydrotreating of pyro-oil derived from green microalgae spirulina the (Arthrospira) plantensis over NiMo catalysts impregnated over a novel hybrid support
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Catalytic hydrotreating of pyro-oil derived from green microalgae spirulina the (Arthrospira) plantensis over NiMo catalysts impregnated over a novel hybrid support

机译:新型杂化载体上浸渍的NiMo催化剂对绿色微藻螺旋藻(Arthrospira)植物的火烧油的催化加氢处理

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摘要

Upgrading of pyrolysis bio-oil by a novel catalytic hydrotreating process, including hydrodeoxygenation (HDO) and hydrodenitrogenation (HDN) was found as an effective technical method for the improvement of biofuel characteristics. In this study, for the first time, the performance of a novel meso-microporous composite material, HMS-ZSM-5, as a support on the catalytic activity of NiMo-based catalysts in the bio-oil hydrotreating was evaluated. The experiments were carried out in a flow fixed-bed reactor at the temperature range of 300-360 degrees C, 30 bar pressure, and LHSV = 4 h-1. Also, the results were and compared with those of HMS, ZSM-5, and gamma-Al2O3 supports. For all catalysts, the increase in temperature resulted in the enhancement of HDO and HDN reactions efficiency. NiMo/ HMS-ZSM-5 possessed a high acid property which contributed to the removal of oxygen and nitrogen from bio-oil, with the conversion of 84.10% and 69.60%, respectively. Therefore, the novel catalyst of this study represented much superior upgrading performances compared with those of stand-alone NiMo/HMS and NiMo/ZSM-5 catalysts and also the conventional catalyst of NiMo/gamma-Al2O3. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:发现通过包括加氢脱氧(HDO)和加氢脱氮(HDN)在内的新型催化加氢处理工艺来提高热解生物油的利用率是改善生物燃料特性的有效技术手段。在这项研究中,首次评估了新型介孔-微孔复合材料HMS-ZSM-5在生物油加氢处理中作为NiMo基催化剂催化活性的载体的性能。实验在流动固定床反应器中在300-360摄氏度,30巴压力和LHSV = 4 h-1的温度范围内进行。此外,将结果与HMS,ZSM-5和gamma-Al2O3载体的结果进行了比较。对于所有催化剂,温度的升高导致HDO和HDN反应效率的提高。 NiMo / HMS-ZSM-5具有高酸性质,有助于从生物油中去除氧气和氮,转化率分别为84.10%和69.60%。因此,与独立的NiMo / HMS和NiMo / ZSM-5催化剂以及传统的NiMo /γ-Al2O3催化剂相比,本研究的新型催化剂具有更高的升级性能。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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