• 本文报导了微型反应器中用模型化合物甲苯正辛烷表征催化剂加氢-脱氢加氢裂解功能的方法。

    Hydrogenation-dehydrogenation and acidic functions of hydrocracking catalysts were characterized by the use of model compounds of toluene and n-octane in a microreactor.

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  • 综述了裂解汽油馏分增产BT X芳烃技术进展以及相关加氢脱烷基非芳烃加氢裂解技术

    Technology Progress of producing BTX aromatics from heavy fraction of pyrolysis gasoline and correlative hydrodealkylation and non-aromatics hydrocracking techniques were reviewed in this paper.

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  • 提出乙烷水蒸汽转化反应化学计量方程序,对已有的反应机理作了补充,指出甲烷同系物的水蒸汽转化与其加氢裂解反应的相似本质。

    A new chemical equation for the reaction of ethane with steam is suggested. It is pointed out that the steam conversion is similar to hydrocracking of methane homologs.

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  • 四氢萘加氢裂化反应关键步骤双环化合物裂解转化率以及单环化合物的产率两种催化剂担体的酸性及反应温度有关。

    The key steps of hydrocracking of tetralin, the conversion of double ring compounds and the yields of mono-ring compounds were affected by the reaction temperature and the acidity of two catalysts.

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  • 常压三线减压一线加氢裂化油作裂解原料,经过小型试验评价和工业实际应用证明优良乙烯裂解原料。

    Bench scale test and commercial application test have verified that the tail oil from heavy AGO and light VGO hydrocracking is an excellent feedstock for ethylene production.

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  • 裂解汽油加氢装置物料含有大量不饱和,自造成装置中的分馏器堵塞,会严重影响石油化工厂的连续生产。

    The materials to be treated in the distillation towers fo pygas hydrogenation unit contain a lot of unsaturated hydrocarbons which have strong tendency of self - polymerization.

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  • 通过延迟焦化汽油加氢普通汽油乙烯裂解试验比较,延迟焦化汽油加氢可以作乙烯原料

    Through the test and comparison of ethylene cracking of hydrogenated delayed coking gasoline and regular grade straight-run gasoline, it is showed that the former can be used as ethylene stock.

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  • 通过裂解C5双环戊二烯提纯,其余组分加氢精制作为生产乙烯裂解原料。 增加了乙烯裂解原料的来源

    Dicyclopentadiene in Pyrolysis C5 were pirst purified, other components were obtained through hydrofining process as cracking raw material to produce ethylene in order to in crease source of ethylene.

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  • 裂解汽油加氢反应主要是脱硫烯烃饱和等反应。

    The second-stage hydrogenation reaction is mainly hydrodesulfurization and alkene saturation hydrogenation of pyrolysis gasoline.

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  • 结果表明加氢馏分适宜作为裂解原料,可以作为催化裂化的原料。

    The results show that fractions of the hydrogenation residue are suitable for catalyzed cracking materials instead of cracking materials.

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  • 介绍了氯乙烷裂解燃料工艺过程效果

    The process of adding hydrogen gas in fuel gas of ethylidene chloride pyrolyzer and its effects were introduced.

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  • 重点分析裂解碳九加氢工艺催化剂技术,强调了原料预处理反应工艺催化剂设计等要点

    The hydrogenation technologies, as well as catalysts used in hydrotreating, were analyzed and compared, and feedstock pretreatment, reaction process and catalyst design were discussed.

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  • 本文介绍一种氢化分析裂解技术加氢还原裂解气相色谱法用于烯烃类塑料物证微细结构分析。技术的原理及其刑事技术鉴定中的应用给予综述

    The new hydrogenation analysis pyrolysis technology of microstructural analysis for olefine plastic evidence has been reviewed and it's application also has been introduced in this paper.

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  • 本文介绍一种氢化分析裂解技术加氢还原裂解气相色谱法用于烯烃类塑料物证微细结构分析。技术的原理及其刑事技术鉴定中的应用给予综述

    The new hydrogenation analysis pyrolysis technology of microstructural analysis for olefine plastic evidence has been reviewed and it's application also has been introduced in this paper.

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