1) Structured Catalysts
构件催化剂
2) Catalyst structure
催化剂结构
1.
The condition of bonds, charge distribution and energy change were studied for the dehydration process of zirconium sulfate tetrahydrate The calculated results of catalyst structure were bassically in agreement with the experimental resu.
采用以 A S E D M O( 含原子对排斥的 E H M O 法) 为基础的结构自动优化 E H T O P T 法对制备醇醚醋酸酯类产品的四水硫酸锆层状催化剂结构进行了理论研究。
3) catalyst reconstruction
催化剂重构
4) catalyst texture
催化剂织构
5) isomerization catalyst
异构化催化剂
1.
In this paper,two flows of total isomerization process are introduced,and several aspects of this process are discussed including the characters of isomerized oil,isomerization catalyst and adsorbent,the feed projects of different feedstocks,the operational conditions and so on.
简单介绍了完全异构化工艺的2种流程,并对该工艺的以下几方面进行了分析:异构化油的特点、常用异构化催化剂的特点、常用吸附剂的特点、不同原料的进料方案和工艺操作条件等。
2.
The industrial application result of Pd-type C5/C6 isomerization catalyst was presented.
报道钯型C5/C6异构化催化剂的工业应用试验结果。
3.
C 8 aromatics isomerization catalyst, SKI 400 40, was prepared for using in the isomerization unit in Yangzi Petrochemical Company after expansion revamping to fulfill the specified operating conditions, such as high activity of catalyst, low hydrogen/oil ratio and high space velocity.
开发出适于扬子石油化工股份有限公司芳烃联合装置扩建后工况条件 (高活性、低氢油比、高空速 )的新型SKI 40 0 40型C8芳烃异构化催化剂。
6) aromatization catalyst
芳构化催化剂
1.
Simulation of the regeneration of large particle FCC naphtha aromatization catalyst;
大颗粒FCC汽油芳构化催化剂表面烧焦过程的数值模拟
2.
It was emphasized that in the future,it would be a development trend of aromatization catalysts to make nano-HZSM-5 zeolite modified.
综述了轻烃芳构化催化剂的研究进展,分析比较了各种改性HZSM-5催化剂的特点,讨论了HZSM-5催化剂失活的原因。
补充资料:层状结构催化剂
分子式:
CAS号:
性质:在层状结构物中层与层之间引进有机或无机的基因,从而具有催化作用的催化剂。其优点是可通过控制层间距(如0.5~4.0nm),使反应物定向,以达到独特的反应物和产物选择性。层状结构材料可以用天然层状黏土或水滑石等改性,也可以用K2La2Ti3O10等起始层板材料分步交换制得。提高柱层状结构物的热稳定性和水热稳定性,目前还比较困难。
CAS号:
性质:在层状结构物中层与层之间引进有机或无机的基因,从而具有催化作用的催化剂。其优点是可通过控制层间距(如0.5~4.0nm),使反应物定向,以达到独特的反应物和产物选择性。层状结构材料可以用天然层状黏土或水滑石等改性,也可以用K2La2Ti3O10等起始层板材料分步交换制得。提高柱层状结构物的热稳定性和水热稳定性,目前还比较困难。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条