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Enhancing the light olefin selectivity of an iron-based Fischer–Tropsch synthesis catalyst by modification with CTAB

机译:通过CTAB改性提高铁基费-托合成催化剂的轻烯烃选择性

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The effects of the surfactant hexadecyltrimethylammonium bromide (CTAB) on the catalytic performance of a manganese-promoted iron (FeMn) catalyst for the Fischer–Tropsch to olefin (FTO) reaction were investigated. The use of the CTAB-assisted FeMn catalyst resulted in the production of light olefin (C _(2–4) ~() ) selectivity of up to 55.45% with a ratio of olefin to paraffin among the C _(2) –C _(4) hydrocarbons as high as 7.75 under industrially relevant conditions (320 °C, 1.0 MPa, H _(2) /CO ratio of 1.5 (v/v), GHSV = 4200 h ~(?1) ). The characterization results indicate that CTAB has a great influence on the structure, composition, chemical state, and catalytic performance of the iron-based catalyst. Most interestingly, a greater amount of Mn promoter was found to be dispersed on the surface of α-Fe _(2) O _(3) , rather than being dissolved into the α-Fe _(2) O _(3) lattice when CTAB was employed, which contributed towards enhancing the promotional effects of the Mn promoter, leading to the formation of certain surface-specific activity sites.
机译:研究了表面活性剂十六烷基三甲基溴化铵(CTAB)对锰助铁(FeMn)催化剂对费托合成烯烃(FTO)反应的催化性能的影响。 CTAB辅助的FeMn催化剂的使用导致轻烯烃(C _(2-4)〜())的选择性高达55.45%,并且C _(2)–C中烯烃与石蜡的比例在工业上相关的条件下(320°C,1.0 MPa,H _(2)/ CO比为1.5(v / v),GHSV = 4200 h〜(?1)),_(4)烃含量高达7.75。表征结果表明,CTAB对铁基催化剂的结构,组成,化学状态和催化性能有很大的影响。最有趣的是,发现大量的Mn助催化剂分散在α-Fe_(2)O _(3)的表面上,而不是溶解在α-Fe_(2)O _(3)的晶格中当使用CTAB时,有助于增强Mn启动子的促进作用,导致形成某些表面特异性活性位点。

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