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Hydrogen production via steam reforming of acetic acid over biochar-supported nickel catalysts

机译:在生物炭负载的镍催化剂上通过乙酸的蒸汽重整制氢

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Development of high-performance and low-cost catalysts will make the biomass-derived hydrogen production technology, steam reforming of bio-oil, becomes to be more and more economical and promising. Biochar, which was produced via fast pyrolysis of rice husk, was activated by different methods, and then it was used as a support for the nickel catalyst, and tested in the steam reforming of acetic acid. The physicochemical properties of the Ni/biochar (BCx) catalysts were characterized by BET, XRD, SEM, TEM and H-2-TPR. The development of pore structure and improvement of surface properties were achieved by the activation. Subsequently, the activity of several catalysts on hydrogen production was investigated. It was found that the Ni/BC4 catalyst (biochar activated by KOH alkalization coupled with HNO3 reflux) exhibited the best catalytic performance. Under the conditions of T = 700 degrees C, S/C = 2.5 and LHSV = 10 h(-1), the carbon conversion and hydrogen yield reached to 91.2% and 71.2%, respectively. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:高性能和低成本催化剂的开发将使生物质衍生的制氢技术,生物油的蒸汽重整变得越来越经济和有希望。通过稻壳的快速热解产生的生物炭通过不同的方法活化,然后用作镍催化剂的载体,并在乙酸的蒸汽重整中进行了测试。通过BET,XRD,SEM,TEM和H-2-TPR对Ni /生物炭(BCx)催化剂的理化性质进行了表征。通过活化实现了孔结构的发展和表面性能的改善。随后,研究了几种催化剂对产氢的活性。发现Ni / BC4催化剂(通过KOH碱化和HNO3回流活化的生物炭)表现出最佳的催化性能。在T = 700摄氏度,S / C = 2.5和LHSV = 10 h(-1)的条件下,碳转化率和氢产率分别达到91.2%和71.2%。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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