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1)  Lurgi synthesis reactor
鲁奇甲醇合成塔
2)  Lurge converter
鲁奇合成塔
1.
Physical characteristics and composition were analyzed for XNC 98 type methanol synthesis catalyst, in allusion to features of Lurge converter, the filling scheme and operation step were prepared, the scheme of heating / reducing and its operation process for this catalyst were described in detail, the application situation of production was summarized.
介绍了XNC -98型甲醇合成催化剂的物理特性和组成 ,针对鲁奇合成塔的特点 ,制定了装填方案和操作步骤 ,详细阐述了该催化剂的升温还原方案和升温还原操作过程 ,对生产使用情况进行了总
3)  methanol synthesis reactor
甲醇合成塔
1.
Two-dimensional mathematical model of Lurgi tube-shell type methanol synthesis reactor with by-product steam was established, with taking hydrogenation of CO and CO_2 as the independent reactions and methanol and CO_2 as the key components in the methanol synthesis system.
以CO加氢和CO_2加氢合成甲醇平行反应为独立反应,甲醇和CO_2为关键组分,建立了鲁奇副产蒸汽管壳型甲醇合成塔催化床的二维数学模型,用二维正交配置法求得催化床内各组分浓度和床层温度随轴向和径向分布。
2.
In respect that methanol synthesis reactor is the crucial equipment of methanol synthesis system, a mathematics model of catalyst bed was first established.
甲醇合成塔是甲醇合成工序的关键设备,本文首先建立了甲醇合成塔催化床的数学模型,并根据工厂实际生产数据对模型参数进行了反算,然后对催化床模型进行了验证。
4)  lurgi rectisol
鲁奇低温甲醇洗
5)  water tube type of methanol converter
水管式甲醇合成塔
1.
The features were discussed for process flow of low pressure & constant temperature methanol synthesis system,structure type & selection scheme were introduced for water tube type of methanol converter internal;through the analysis of production operation data,the application effect of low pressure & constant temperature water tube type of methanol converter was summed up.
论述了低压恒温甲醇合成系统工艺流程的特点,介绍了水管式甲醇合成塔内件的结构形式和选型方案;通过生产运行数据分析,总结了低压恒温水管式甲醇合成塔的应用效果。
6)  methanol synthesis reactor with uniform temperature
均温型甲醇合成塔
1.
The novel Lidar low-pressure methanol synthesis reactor with uniform temperature and its application in the methanol plant of Qujing Dawei Coking and Gas Co.
介绍了林达新型低压均温型甲醇合成塔及其在曲靖大为焦化制供气有限公司以焦炉气为原料的甲醇合成装置上的应用情况。
补充资料:汉奇吡啶合成
分子式:
CAS号:

性质: 两分子β-酮酸酯(或β-二酮)与一分子醛和一分子氨反应,缩合成二氢吡啶衍生物。易脱氢芳构化,如用亚硝酸或铁氰化钾即可使它转化成吡啶衍生物。是合成这类化合物的重要方法。

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