首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Effect of the SiO2 support on the catalytic performance of Ag/ZrO2/SiO2 catalysts for the single-bed production of butadiene from ethanol
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Effect of the SiO2 support on the catalytic performance of Ag/ZrO2/SiO2 catalysts for the single-bed production of butadiene from ethanol

机译:SiO2支持对乙醇丁二烯丁二烯丁二烯催化性能对Ag / ZrO2 / SiO2催化剂的催化性能

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摘要

A ternary Ag/ZrO2/SiO2 catalyst system was studied for single-step conversion of ethanol to butadiene by varying the catalyst composition (Ag, Ir, or Pt metal component, Ag/ZrO2 loading, and choice of SiO2 support) and operating conditions (space velocity and feed gas composition). Exceptional catalytic performance was achieved over a 1%Ag/4%ZrO2/SiO2-SBA-16 catalyst leading to 99% conversion and 71% butadiene selectivity while operating under mild conditions (325 degrees C, 1 atm, and 0.23 h(-1)). Several classes of silica silica gels, fumed silicas, mesoporous silicas)-were evaluated as catalyst supports, and SBA-16 was found to be the most promising choice. The SiO2 support was found to significantly influence both conversion and selectivity. A higher SiO2 catalyst surface area facilitates increased Ag dispersion which leads to greater conversion due to the accelerated initial ethanol dehydrogenation reaction step. By independently varying Ag and ZrO2 loading, Ag was found to be the main component that affects ethanol conversion. ZrO2 loading and thus Lewis acid sites concentration was found to have little impact on the ethanol conversion. Butadiene selectivity depends on the concentration of Lewis acid site, which in turn differs depending on the choice of SiO2 support material. We observed a direct relationship between butadiene selectivity and concentration of Lewis acid sites. Butadiene selectivity decreases as the concentration of Lewis acid sites increases, which corresponds to an increase in ethanol dehydration to ethylene and diethyl ether. Additionally, adding H-2 to the feed had little effect on conversion while improving catalytic stability; however, selectivity to butadiene decreased. Finally, catalyst regenerability was successfully demonstrated for several cycles.
机译:通过改变催化剂组合物(Ag,IR或Pt金属组分,Ag / ZrO2负载和SiO 2支持的选择)和操作条件,研究了三元Ag / ZrO2 / SiO 2催化剂体系,通过改变催化剂组合物(Ag,IR或Pt金属组分,Ag / ZrO2载荷和选择)和操作条件(空间速度和饲料气体组成)。在1%Ag / 4%ZrO 2 / SiO 2-SBA-16催化剂上实现特殊的催化性能,导致99%转化率和71%丁二烯选择性,同时在温和条件下运行(325℃,1atm和0.23小时(-1 )))。发现几种阶级的二氧化硅硅胶,气相二氧化硅,中孔三种Silicas) - 评估为催化剂载体和SBA-16是最有前途的选择。发现SiO 2支持显着影响转化和选择性。更高的SiO 2催化剂表面积有助于增加Ag分散体,这导致由于加速的初始乙醇脱氢反应步骤导致更大的转化。通过独立改变Ag和ZrO2负载,发现Ag是影响乙醇转化的主要成分。 ZrO2负荷和因此,发现路易斯酸基因位点对乙醇转化率几乎没有影响。丁二烯选择性取决于路易斯酸部位的浓度,这反过来根据SiO 2支持材料的选择而不同。我们观察到丁二烯选择性与路易斯酸部位浓度之间的直接关系。随着路易斯酸产点的浓度增加,丁二烯选择性降低,这对应于乙醇与乙烯和乙醚的乙醇脱水的增加。另外,向进料中添加H-2对转化作用几乎没有影响,同时提高催化稳定性;然而,对丁二烯的选择性降低。最后,成功地证明了催化剂再生性几个循环。

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