...
首页> 外文期刊>Catalysis science & technology >Mechanistic insights into the catalytic elimination of tar and the promotional effect of boron on it: first-principles study using toluene as a model compound
【24h】

Mechanistic insights into the catalytic elimination of tar and the promotional effect of boron on it: first-principles study using toluene as a model compound

机译:机械的见解催化消除焦油和促销的效果硼:采用基于研究使用甲苯作为模型化合物

获取原文
获取原文并翻译 | 示例
           

摘要

Tar is the undesired viscous black liquid produced during the gasification of biomass. Catalytic elimination of tar is feasible and is economically promising. In the present investigation, we performed first-principles calculations (i) to elucidate the decomposition mechanism of tar on the popular nickel (Ni) catalyst and (ii) to reveal the promotional effect of boron (B) in improving the activity and stability of the Ni catalyst for tar decomposition. Being the most abundant component of tar, toluene was chosen as a model compound. On the Ni(111) surface, toluene adsorbs strongly in a bridge configuration and the activation barrier for methyl C-H dissociation is 72 kJ mol(-1). Toluene can further decompose on the Ni(111) surface via stepwise dehydrogenation of the methyl group. The aromatic C-H bond at the ortho position could only be activated after the complete dehydrogenation of the methyl group, which is followed by subsequent ring opening (activation barriers are 112 and 84 kJ mol(-1), respectively) and C-C cleavages, to generate smaller hydrocarbons. The incorporation of subsurface B into the Ni catalyst (B-Ni) results in a corrugated Ni top surface and toluene adsorbs more strongly by 11 kJ mol(-1) on the B-Ni catalyst than on pure Ni. Although the mechanism of toluene decomposition remains unchanged after doping with boron, the decomposition of toluene is significantly promoted on B-Ni. The activation barrier for the first methyl C-H dissociation on B-Ni is reduced to 51 kJ mol(-1). Subsequent methyl C-H activations are also promoted on the B-Ni catalyst, but to a smaller extent. The aromatic C-H activation is also strongly promoted (89 kJ mol(-1) vs. 112 kJ mol(-1) on pure Ni). Additional calculations on stepped surface models of Ni show that the activation barriers of toluene decomposition on the B-Ni surface are very close to those on B5 and F4 step sites of pure Ni, thus suggesting that the promotional effect of B on the catalytic activity of Ni could be mainly attributed to the creation of step-like corrugations on the Ni surface. These corrugations could also inhibit the formation of graphene-like structures on B-Ni.
机译:焦油是不受欢迎的粘稠的黑色液体在生物质气化。消除沥青是可行的在经济上有前途。调查,我们采用基于执行计算(我)来阐明分解机制上的焦油流行镍(镍)催化剂和(2),揭示了促销硼的影响在改善活动和(B)焦油的镍催化剂的稳定性分解。沥青的甲苯被选为模型化合物。倪(111)表面,甲苯吸附强烈在一个桥接配置和激活屏障的甲基碳氢键离解72 kJ摩尔(1)。通过逐步的脱氢倪(111)表面甲基。邻位只能激活后完整的甲基脱氢,这是紧随其后的是后续的开环吗(激活壁垒是112和84 kJ摩尔(1),分别)和碳碳分裂,生成较小的碳氢化合物。地下B的镍催化剂(B-Ni)的结果在波纹倪顶面和甲苯吸附更强烈的11 kJ摩尔(1)B-Ni比纯镍催化剂。甲苯的分解机制仍然存在不变与硼掺杂后,分解甲苯是显著的B-Ni提升。第一次甲基碳氢键离解B-Ni降低51 kJ摩尔(1)。激活B-Ni也提升催化剂,但在一个较小的程度上。碳氢键活化,也大力推动(89 kJ摩尔(1)与112 kJ摩尔(1)纯镍)。额外的计算了表面模型倪表明,激活的壁垒甲苯B-Ni表面分解非常接近的B5和F4一步网站上纯镍,从而表明促销B对镍的催化活性的影响主要是归因于状的创建干硬后镍表面。干硬后还可以抑制的形成B-Ni graphene-like结构。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号