费托法
钴
微晶
催化作用
化学工程
柴油
选择性
吸附
合成气
介孔材料
化学
碳纤维
碳氢化合物
材料科学
纳米技术
有机化学
复合数
结晶学
复合材料
工程类
作者
Qingpeng Cheng,Ye Tian,Shuaishuai Lyu,Na Zhao,Kui Ma,Tong Ding,Zheng Jiang,Lihua Wang,Jing Zhang,Lirong Zheng,Fei Gao,Lin Dong,Noritatsu Tsubaki,Xingang Li
标识
DOI:10.1038/s41467-018-05755-8
摘要
Abstract Fischer–Tropsch synthesis (FTS) is a promising technology to convert syngas derived from non-petroleum-based resources to valuable chemicals or fuels. Selectively producing target products will bring great economic benefits, but unfortunately it is theoretically limited by Anderson–Schulz–Flory (ASF) law. Herein, we synthesize size-uniformed cobalt nanocrystals embedded into mesoporous SiO 2 supports, which is likely the structure of water-melon seeds inside pulps. We successfully tune the selectivity of products from diesel-range hydrocarbons (66.2%) to gasoline-range hydrocarbons (62.4%) by controlling the crystallite sizes of confined cobalt from 7.2 to 11.4 nm, and modify the ASF law. Generally, larger Co crystallites increase carbon-chain growth, producing heavier hydrocarbons. But here, we interestingly observe a reverse phenomenon: the uniformly small-sized cobalt crystallites can strongly adsorb active C* species, and the confined structure will inhibit aggregation of cobalt crystallites and escape of reaction intermediates in FTS, inducing the higher selectivity towards heavier hydrocarbons.
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