催化作用
费托法
化学
粒径
碳氢化合物
微乳液
肺表面活性物质
粒子(生态学)
化学工程
产品分销
链式传播
无机化学
有机化学
物理化学
选择性
单体
工程类
地质学
聚合物
海洋学
生物化学
作者
Ali Nakhaei Pour,Fatemeh Dolati
标识
DOI:10.3184/174751916x14701459562861
摘要
The influence of the catalyst particle size in determining Fischer–Tropsch synthesis (FTS) performance for nano-structured iron catalysts was investigated. The catalysts were prepared by a microemulsion method and to achieve a series of catalysts with different iron particle size, the water-to-surfactant molar ratio (W/S) in the microemulsion system varied from 4 to 12. The results demonstrate that by decreasing the levels of active phase of the iron catalyst, the termination rates for chain growth are increased compared to the propagation rates. In addition, the activation energy for chain propagation is lower than for chain termination, and this difference (E t – E p ) for the hydrocarbon product distributions which is characterised by α 1 , is lower than the hydrocarbon product distribution which is characterised by α 2 The results indicate the H 2 concentration on the catalyst surface is decreased by increasing the catalyst particle size. Thus, the dependence of α (α 1 , and/or α 2 ) on H 2 partial pressures is increased by decreasing of catalyst particle size and the dependence of α 2 on H 2 partial pressures is weaker than for α 1 .
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