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1)  octene ['ɔkti:n]
辛烯
1.
The effects of promoters,cocatalysts,and reaction conditions such as Al/Cr molar ratio,reaction temperature,and reaction pressure on its catalytic activity and selectivity for 1-octene were studied.
将四元催化剂体系(乙酰丙酮铬-膦胺型配体-助催化剂甲基铝氧烷-促进剂六氯乙烷)用于乙烯齐聚制1-辛烯反应,考察了促进剂、助催化剂、Al/Cr摩尔比、反应温度和反应压力等对催化剂的活性和1-辛烯的选择性的影响。
2.
Chromium-based catalysts were used to produce 1-hexene and 1-octene with high selectivities.
铬系催化剂则可以高选择性的合成1-己烯和1-辛烯
3.
1%) towards 1-octene and catalytic activity for ethylene tetramerization in the presence of Cr(Ⅲ) compounds (chromium chloride tetrahydrofuran or chromium acetyl acetonate) and methylaluminoxane.
利用氯化二苯基膦与二胺类化合物反应生成二苯基膦胺配体,它与四氢呋喃氯化铬或乙酰丙酮铬在甲基铝氧烷的存在下显示出较高的催化乙烯四聚的活性和较高的生成1-辛烯选择性(最高可达73·1%)。
2)  1-octene
1-辛烯
1.
Synthesis of microporous silica supported ligand Pt catalyst for hydrosilylation of 1-octene;
微孔二氧化硅负载络合铂催化1-辛烯硅氢加成反应
2.
Synthesis and Characterization of 1-Octene/Penten-4-ol-1 Copolymer;
1-辛烯/戊烯-4-醇-1共聚物的合成和表征
3.
Advance in research of the catalyst and technology for ethylene tetramerization toward 1-octene;
乙烯选择性四聚制1-辛烯催化剂及工艺技术研究进展
3)  octene-copolymerization
辛烯共聚
4)  cyclooctene [,saikləu'ɔkti:n]
环辛烯
1.
In the oxidation process, the oxidation of cyclooctene to epoxide and the oxidation of cyclohexane to cyclohexanol and cyclohexanone are two important industrial production processes.
本文通过利用洁净易得的氧化剂-分子氧,以环辛烯和环己烷的催化氧化作为研究对象,在不加入共还原剂的条件下考察了不同方法,不同条件下制备的非均相钴基催化剂的催化性能,并且通过多种物化技术对其进行了表征。
2.
PS grafted N-benzyl-N,N-dimethyl-N-dodecyl quaternary ammonium phosphor tungsten heterpolyacid salts were used in the phase boundary catalysis epoxidation of cyclooctene(COE) with aqueous hydrogen peroxide(HP) under stirred-free conditions.
以氯甲基化大孔聚苯乙烯-二乙烯苯交联树脂接枝N-苄基-N,N-二甲基-N-十二烷基季铵磷钨杂多酸盐为相界催化剂,进行了无搅拌条件下的环辛烯双氧水催化环氧化反应研究。
3.
The uncatalyzed epoxidation of cyclooctene with molecular oxygen as oxidant under solvent-free and no-inducement conditions has been studied.
以O2气为氧源,在无溶剂无引发剂条件下,研究了非催化剂体系中环辛烯环氧化反应,并考察了反应温度、时间、压力、自由基引发剂以及自由基阻聚剂对环辛烯环氧化反应的影响。
5)  n-octylene
正辛烯
1.
The performance of n-octylene over CoMo/SAPO-11 catalyst;
辛烯在CoMo/SAPO-11催化剂上的异构化反应性能
6)  isooctene
异辛烯
1.
A novel Ziegler-Natta type catalyst for the hydrogenation reaction of isooctene to isooctane was developed by investigated the effect of the solvent and the ratio of aluminium/nickel on the conversion,and the influence of process conditions on the hydrogenation reaction by Ziegler-Natta type catalyst was also studied.
探讨了在Ziegler-Natta型均相催化剂上进行异辛烯加氢反应时,催化剂中的溶剂和铝/镍质量比对反应转化率的影响,得到了优化的Ziegler-Natta型均相催化剂,并考察了工艺条件对异辛烯加氢反应的影响。
2.
Dimerization-Etherification Process is a new process developed by SINOPEC Research Institute of Petroleum Processing to produce MTBE and isooctene from C4s olefin and methanol.
叠合-醚化联产技术是中国石化股份有限公司石油化工科学研究院开发的一项以C4烯烃和甲醇为原料,联产MTBE和异辛烯的新技术,石家庄炼油化工股份有限公司采用该技术对原选择性叠合装置进行了改造。
补充资料:辛烯
CAS:25377-83-7
分子式:C8H16
中文名称:辛烯
英文名称:di-n-Buten
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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