甲苯
tar(计算)
镍
催化作用
蒸汽重整
合成气
材料科学
化学工程
碳纤维
冶金
化学
无机化学
有机化学
工程类
计算机科学
复合材料
程序设计语言
制氢
复合数
作者
Omeralfaroug Khalifa,Ming-xin Xu,Rongjun Zhang,Tahir Iqbal,Mingfeng Li,Qiang Lü
标识
DOI:10.1007/s11708-021-0721-8
摘要
Catalytic steam reforming is a promising route for tar conversion to high energy syngas in the process of biomass gasification. However, the catalyst deactivation caused by the deposition of residual carbon is still a major challenge. In this paper, a modified Ni-based Ni-Co/Al2O3-CaO (Ni-Co/AC) catalyst and a conventional Ni/Al2O3 (Ni/A) catalyst were prepared and tested for tar catalytic removal in which toluene was selected as the model component. Experiments were conducted to reveal the influences of the reaction temperature and the ratio between steam to carbon on the toluene conversion and the hydrogen yield. The physicochemical properties of the modified Ni-based catalyst were determined by a series of characterization methods. The results indicated that the Ni-Co alloy was determined over the Ni-Co/AC catalyst. The doping of CaO and the presence of Ni-Co alloy promoted the performance of toluene catalytic dissociation over Ni-Co/AC catalyst compared with that over Ni/A catalyst. After testing in steam for 40 h, the carbon conversion over Ni-Co/AC maintained above 86% and its resistance to carbon deposition was superior to Ni/A catalyst.
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