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1)  cyclohexene
环己烯
1.
Polymer Bound Phenylalanine Salicylaldehyde Schiff-base Complex Catalyst for oxidation of cyclohexene with molecular oxygen;
高分子担载苯丙氨酸希夫碱钴配合物催化氧化环己烯研究
2.
Green Oxidation of Cyclohexene to Adipic Acid with Hydrogen Peroxide Catalyzed by 12-Phosphotungstate acid and Ionic Liquids;
杂多酸和离子液体催化环己烯的清洁氧化反应研究(英文)
3.
Synthesis of cyclohexene using rare earth solid superacid SO_4~(2-)/TiO_2-Nd_2O_3 catalyst and its mechanism study;
稀土超强酸SO~4~(2-)/TiO_2-Nd_2O_3催化合成环己烯
2)  cyclohexenone
环己烯酮
1.
The preparation methods of dimethylamine hydrochloride/chromium trioxide oxidation reagent and the selective oxidation reaction of cyclohexenol to cyclohexenone with this catalyst are studied.
研究了负载型盐酸二甲胺三氧化铬氧化剂的制备方法,以环己烯醇选择性氧化成环己烯酮,考察了载体、制备方法、活化条件对氧化剂性能的影响。
2.
The process of synthesizing cyclohexenone under high pressure was studied,which included twoimportant process.
本文以中国神马集团富余的环己烯为原料,以价廉易得的分子氧为氧化剂,开展了加压下环己烯酮的合成工艺研究,该合成工艺主要包括催化剂的制备与筛选以及合成工艺条件的优化两个过程。
3.
The effects of catalyst dosage,reaction time,reaction temperature and reaction pressure on the conversion of cyclohexene and the yield of cyclohexenone were also studied.
然后以自制的MnSalophen/Al2O3为催化剂,以分子氧为氧化剂,研究了催化剂用量、反应时间、反应温度以及反应压力对环己烯转化率和环己烯酮收率的影响。
3)  cyclohexenol
环己烯醇
1.
The preparation methods of dimethylamine hydrochloride/chromium trioxide oxidation reagent and the selective oxidation reaction of cyclohexenol to cyclohexenone with this catalyst are studied.
研究了负载型盐酸二甲胺三氧化铬氧化剂的制备方法,以环己烯醇选择性氧化成环己烯酮,考察了载体、制备方法、活化条件对氧化剂性能的影响。
4)  the cyclohexene method
环己烯法
1.
Some about adipic acid,such as the quality,utility,market future and production status,and four primary synthesis technologies of adipic acid,including the KA oil method,the C_4 alkene method,the biologic method and the cyclohexene method have been introduced.
介绍了己二酸的性质、用途、市场前景和生产现状,介绍了己二酸的4种主要合成工艺:KA油法、C4烯烃法、生物法和环己烯法等,分析了这些工艺的现状和优缺点。
5)  cyclohexadiene [,saikləu,heksə'daii:n]
环己二烯
6)  raw cyclohexene
粗环己烯
补充资料:环己烯
    分子式C6H10,分子量82.14。无色液体。熔点为-103.5℃,沸点83℃。不溶于水,溶于乙醇、乙醚等。存在于煤焦油内。能发生加成反应。可用作溶剂和烷基化试剂。也可用于制备己二酸及用作高辛烷值汽油的稳定剂。可由环已醇在高温和催化剂存在时脱水制得。
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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