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1)  cracking catalyst
裂解催化剂
1.
Determination of Sodium, Iron and Copper in Petroleum Cracking Catalyst by Atomic Absorption Spectrophotometry;
原子吸收分光光度法测定石油裂解催化剂中的钠、铁和铜
2)  hydrothermal cracking catalyst
水热裂解催化剂
3)  catalytic cracking
催化裂解
1.
ZSM-5 catalysts modified with lanthanum for catalytic cracking of C_4-olefins to propylene;
La修饰ZSM-5分子筛催化剂用于C_4烯烃催化裂解制丙烯
2.
Study on production of propylene and ethene from 1-butene by catalytic cracking;
1-丁烯催化裂解制丙烯和乙烯反应性能的研究
3.
Study on activity stability of catalytic cracking catalyst for producing lube base oil from hydrocracking bottoms;
加氢尾油催化裂解生产润滑油基础油催化剂活性稳定性研究
4)  catalytic pyrolysis
催化裂解
1.
Maximizing yield of propylene by two-stage riser catalytic pyrolysis of heavy oil;
两段提升管催化裂解多产丙烯研究
2.
Study on the catalysts for catalytic pyrolysis of heavy oil to ethylene and propylene;
重油催化裂解多产乙烯丙烯催化剂的研究
3.
Study on lumping kinetic model of heavy oil catalytic pyrolysis;
重油催化裂解集总动力学模型研究
5)  catalytic decomposition
催化裂解
1.
Study on coal gas catalytic decomposition in rotating packed bed reactor;
旋转超重力场反应器催化裂解煤矿瓦斯的研究
2.
Research on advances of converting organosilicon high-boiling components to methylchlorosilane by catalytic decomposition;
有机硅高沸物催化裂解制单硅烷催化剂研究进展
3.
Study on production of methylchlorosilane from the organosilicon high-boiling components by catalytic decomposition;
有机硅高沸物催化裂解制甲基氯硅烷工艺研究
6)  deep catalytic cracking
催化裂解
1.
Molecular reaction kinetics simulation of deep catalytic cracking: Molecular simulation of feedstock;
催化裂解过程分子尺度的反应动力学模拟:原料油分子尺度的模拟
2.
Study on FCC Gasoline Deep Catalytic Cracking;
催化裂化汽油催化裂解反应规律研究
3.
This paper introduced the characteristics of Deep Catalytic Cracking (DCC) technology in aspects of feedstock, catalyst, typical commercial test results, and focused mainly on the latest commercial applications.
文章介绍了DCC技术的主要特点、原料油和催化剂、典型工业试验结果 ,并重点介绍催化裂解技术的最新工业应用情况。
补充资料:催化重整催化剂
分子式:
CAS号:

性质:使石油烃类分子结构重排所用的催化剂。由载体、金属组分和酸性组分构成。载体有氧化铝型、硅铝型和分子筛型(结晶型),常用的是氧化铝型。按金属组分有单胶型和加有第二种金属的双金属型(如铂-铼、铂-锡型等)或多金属型(如铂-铼-铝型、铂-铼-钛型等)酸性组分有氟-氯型和全氯型。目前这种催化剂有单铂、铂-铱、铂-铼、铂-锡四大系列。他们都具有双功能,既具有脱氢、加氢活性,又具有异构化、加氢裂化活性。前一功能一般由铂来承担,后一功能由载体或加到载体上酸性组分来承担。由于具有这两种功能,在重整反应中才能使甲基环戊烷异构脱氢转化成苯。

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