...
首页> 外文期刊>ChemCatChem >Fischer-Tropsch Synthesis Over Cobalt Supported On Silica-Incorporated Mesoporous Carbon
【24h】

Fischer-Tropsch Synthesis Over Cobalt Supported On Silica-Incorporated Mesoporous Carbon

机译:Fischer-Tropsch在二氧化硅掺入的中孔碳上的钴合成

获取原文
获取原文并翻译 | 示例

摘要

The influence of carbon-silica hybrid supports on cobalt catalysts in Fischer-Tropsch synthesishas been investigated. Mesoporous carbon-silica hybrid supports were synthesized through a hydrogen-bonding-assisted self-assembly route by loading different amounts of silica (0 to 45%) as a framework composition with mesoporous carbon. These carbon and hybrid supports were then impregnated with 15wt.% cobalt and the resulting catalysts were characterized by various physicochemical, gravimetric, and spectroscopic methods. The dispersion of silica in the framework of mesoporous carbon modified the surface chemistry and enhanced the wetting properties of the support. Hence, the dispersion and reducibility of cobalt over the hybrid supports increased compared to those of the carbon-supported catalyst. However, above the optimum silica incorporation of 34%, the possibility of phase separation and structural transformation of silica at the high carbonization temperature decreased the dispersion and reducibility of the supported Co catalysts. The carbon-supported catalyst showed a quick drop in the activity during the initial stages of the reaction due to the migration of cobalt particles over the hydrophobic and inert support surface. On the contrary, carbon-silica hybrid supports inhibited the mobility of cobalt particles and produced a higher density of active Co0 sites, leading to a higher initial activity. Carbon-silica-supported catalysts with a silica content of up to 34% were found to exhibit excellent steady state Fischer-Tropsch synthesis activity and C5+ selectivity compared to only carbon and carbon-silica-supported catalyst with >34% silica incorporation.
机译:研究了碳 - 二氧化硅杂交杂交体对Fischer-Tropsch合成中钴催化剂的影响。通过将不同量的二氧化硅(0至45%)作为骨架组合物作为培养基碳,通过氢键键合辅助的自组装途径合成介孔碳 - 二氧化硅杂化载体。然后将这些碳和杂交载体浸渍15wt。%钴和所得催化剂的特征在于各种物理化学,重量谱和光谱方法。二氧化硅在介孔碳骨架中的分散改性表面化学,增强了载体的润湿性质。因此,与碳负载型催化剂的催化剂相比,杂交载体上钴对杂交载体的分散和再减少。然而,高于最佳二氧化硅掺入34%,在高碳化温度下,二氧化硅的相分离和结构转化的可能性降低了负载的CO催化剂的分散和再减少。由于钴颗粒在疏水性和惰性载体表面上迁移,碳负载型催化剂在反应的初始阶段进行了快速下降。相反,碳二氧化硅杂交载体抑制钴颗粒的迁移率并产生了更高密度的活性CO 10位点,导致初始活性更高。发现具有二氧化硅含量高达34%的碳二氧化硅含量高达34%的催化剂表现出优异的稳态Fischer-Tropsch合成活性和与仅碳和碳 - 二氧化硅载体的催化剂相比具有> 34%二氧化硅掺入相比的C5 +选择性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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