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供氢(氘)剂在减压渣油四组分裂化中的作用及其同位素效应 被引量:4
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作者 石斌 杨圣闯 +2 位作者 门秀杰 李慎伟 阙国和 《燃料化学学报》 EI CAS CSCD 北大核心 2005年第5期561-565,共5页
研究了辽河减渣四组分在微型高压釜内中临氮热裂化、临氢热裂化和临氢催化加氢反应,考察了供氢剂或供氘剂对上述反应的影响。结果表明,临氮热裂化时沥青质是大量生焦的物种,胶质的生焦能力不显著,芳香分、饱和分不生焦;临氢热裂化沥青... 研究了辽河减渣四组分在微型高压釜内中临氮热裂化、临氢热裂化和临氢催化加氢反应,考察了供氢剂或供氘剂对上述反应的影响。结果表明,临氮热裂化时沥青质是大量生焦的物种,胶质的生焦能力不显著,芳香分、饱和分不生焦;临氢热裂化沥青质生焦量减少,胶质很少生焦,芳香分和饱和分不生焦;临氢催化加氢时,辽河减渣四组分在临氢反应基础之上,生焦量进一步降低。辽河减渣四组分在临氮热裂化、临氢热裂化和临氢催化加氢过程中添加供氢剂或供氘剂后,生焦反应得到显著抑制,相比之下供氢剂的作用更为明显。三种氢源都具有抑制渣油四组分缩合或缩聚反应的作用。渣油四组分从供氢剂或供氘剂中获得氢(氘)的能力不同,沥青质>胶质>芳香分≈饱和分。就同一组分而言,供氢剂或供氘剂的表观供氢(氘)率随反应条件不同而不同,临氮热裂化>临氢热裂化>临氢催化加氢过程。供氢剂与供氘剂在所有的过程中都存在明显的动力学效应,并且这个动力学效应随加工环境的不同而变化,在临氮热裂化过程中动力学同位素效应明显。在临氢热裂化过程,尤其是催化加氢裂化过程中动力学效应逐渐变得不明显。2H-NMR分析表明,氘代四氢萘的环烷环中的α位比β位的脱氢选择性高,氘代四氢萘脱氢选择性大小的顺序为:临氮热裂化>临氢热裂化>临氢催化加氢过程。 展开更多
关键词 供氢剂 供氘剂 四组分 稳定同位素方法 同位素效应 分散型催化剂 四氢萘
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催化剂和供氢剂对渣油模型化合物裂化反应选择性的影响 被引量:7
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作者 石斌 丁军委 阙国和 《燃料化学学报》 EI CAS CSCD 北大核心 2004年第2期253-256,共4页
The effects of dispersed catalyst and hydrogen donor on the cracking and cracking selectivity of characteristic model compounds in residue oil, such as N-eicosane, butyl benzene and 1,6-diphenylheptane, were investiga... The effects of dispersed catalyst and hydrogen donor on the cracking and cracking selectivity of characteristic model compounds in residue oil, such as N-eicosane, butyl benzene and 1,6-diphenylheptane, were investigated in the thermal, hydrothermal and catalytic hydrocracking systems at 440?℃. The three compounds had different cracking characteristics. N-eicosane had the simplest bond-scission way. The bond-scissions of butyl benzene in the thermal system were mainly β- and γ- bond-scission, while β- in hydrothermal and α- bond-scission in catalytic hydrocracking were main reactions. 1,6-diphenylheptane had more complex cracking ways, which were α-, β-, homolysis and γ-bond-scission. The bond-scissions of 1,6-diphenylheptane in thermal cracking underwent such four ways, how-ever, α- and β-bond-scission or α-bond-scission were main reactions in hydrothermal or in catalytic hydrocracking of 1,6-diphenylheptane, respectively. It seems that these three model compounds experienced the radical reaction in the single systems of model compounds or in the binary system of model compounds/tetralin for thermal, hydrothermal and catalytic hydrocracking. Molecular hydrogen as well as dispersed catalyst enhanced the cracking of model compounds, while H-donor depressed the cracking. For cracking selectivity of the three compounds, thermal and hydrothermal cracking were the basis of other processes and dispersed catalysts clearly affected the cracking selectivity of alkyl aromatics. On the other hand, hydrogen donor had influence on a certain extent on the cracking selectivity on the basis of the thermal, hydrothermal and catalytic hydrocracking systems. 展开更多
关键词 油模型化合物 供氢剂 反应选择性 分散型催化剂 裂化反应
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