• 数据暗示肝脏肾脏可能乙苯毒性攻击目标

    Data also suggests that the liver and kidneys may be a target of toxicity for ethylbenzene.

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  • 首先探讨了乙苯选择氧化脱氢反应

    First, selective oxidative dehydrogenation of ethylbenzene was discussed.

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  • 其中最有代表性乙苯氧化制苯乙酮。

    A typical example is the oxidation of ethylbenzene to prepare acetophenone.

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  • 工艺特点单塔流程分离乙苯苯乙烯

    The technology feature is to separate ethyl benzene and styrene by single tower.

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  • 介绍乙苯脱氢苯乙烯时使用混合催化剂的情况。

    Dehydrogenation of ethylbenzene to styrene using a mixed type catalyst was described.

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  • 其它一些乙苯来源包括尾气排放、汽油蒸汽以及吸烟

    Other sources of ethyl benzene include vehicle exhaust, petrol pump vapors and cigarette smoke.

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  • 文中乙苯精馏塔优化结果分析验证了该方法的有效性。

    The proposed approach was verified in sensitivity analysis of a practical distillation column optimization.

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  • 乙苯及其衍生物氧化制备芳酮方法越来越受到重视

    More and more attention has been paid to the oxidation of the side chain on the ethylbenzene and its derivatives.

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  • 主要考察温度变化生物过滤塔净化含乙苯废气效果影响。

    The effects of temperature change on the performance of a biofilter for treating ethylbenzene.

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  • 考察焙烧条件乙苯脱氢制苯乙烯催化剂性能影响

    Effect of calcination condition on the water tolerant stability of ethylbenzene dehydrogenation catalyst was studied.

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  • 本文介绍了乙苯脱氢制苯乙烯分离精制工艺技术进展

    The paper introduces new developments in dehydrogenation of ethyl benzene to prepare styrene and the separation technique.

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  • 墨西哥湾居民患病血液测试确认含有乙苯二甲苯以及很高成分乙烷

    Gulf residents are getting sick: blood tests confirm ethylbenzene, xylene, and high levels of hexane.

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  • 同时,混合乙苯储罐改造后效益进行了评估,效果很好

    The results of estimate for the modification showed good benefit.

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  • 综述目前分离乙苯几种主要方法,重点评述了吸附分离法

    Several methods for separating diethylbenzene are reviewed in the present paper, in which the method of adsorptive separation is mainly discussed.

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  • 采用管式沸石反应器研究乙苯脱氢反应生成苯乙烯性能。

    The catalytic dehydrogenation of ethylbenzene to styrene in zeolite membrane reactors was studies.

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  • 乙苯催化脱氢苯乙烯过程工艺成熟大型工业装置

    The technology for producing styrene by catalytic dehydrogenation of ethyl benzene has been matured, and applied to large-scale industrial plants.

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  • 采用维拟均相绝热径向反应器模型模拟乙苯负压脱氢径向反应器。

    An one dimensional homogenous adiabatic fixed bed reactor model was adopted to simulate a radial flow reactor for dehydrogenation of ethylbenzene to styrene under vacuum.

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  • 考察了各种因素乙苯脱氢制苯乙烯催化剂机械强度影响

    The factors which influence the mechanical strength of the catalyst for ethylbenzene dehydrogenation to styrene with low potassium were discussed.

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  • 扫描电镜能谱X射线衍射方法乙苯反应器腐蚀产物进行了分析

    The corrosion products formed on ethylbenzene reactor have been examined by using EDX and XRD.

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  • 论文建立了膜组件分立的沸石膜乙苯脱氢模试装置,年产量25

    In this paper, a module-separated ethylbenzene dehydrogenation reactor is set up, which can produce 25 tons styrene per year.

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  • 标准溶液高纯乙苯实验室准确配制分装于2毫升安瓿中

    This standard solution was accurately prepared in super-clean laboratory with pure ethylbenzene and sub-packed in 2ml ampoules.

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  • 除开黑人婴儿,接触乙苯白人婴儿罹患冠心病风险是一般婴儿

    White, but not black, infants who showed exposure to ethyl benzene had four times the risk of CHD.

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  • 介绍了乙苯脱氢制苯乙烯用GS - 06 B催化剂特性工业应用

    The properties and industrial application of GS-06B catalyst for preparing styrene by ethylbenzene dehydrogenation were introduced.

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  • 介绍了G S - 08 m乙苯脱氢苯乙烯催化剂研制工业应用

    Development and industrial application of GS-08M catalyst for ethyl benzene dehydrogenation to styrene were described.

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  • 同时考察不同组成催化剂乙苯CO_2的转化率苯乙烯选择性影响

    Meanwhile, the effect of different catalysts on the conversion of ethylbenzene and CO_2, as well as the selectivity of styrene was investigated.

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  • 探讨乙苯脱氢氧化铁催化剂用于对乙基甲苯脱氢制取对甲基乙烯的可能性

    The possibility of preparing p-methyl styrene from p-ethyltoluene by dehydrogenation on iron oxide catalyst originally used for dehydrogenation of ethyl benzene was studied.

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  • 此外乙苯及其衍生物亚甲基氧化制备酮的反应也具有很广阔的应用前景。

    In addition, the oxidation of the side chain on alkybenzene is a promising route to get ketone product.

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  • 此外乙苯及其衍生物亚甲基氧化制备酮的反应也具有很广阔的应用前景。

    In addition, the oxidation of the side chain on alkybenzene is a promising route to get ketone product.

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