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1)  p-menthane
对烷
1.
Affecting factors,such as content of heavier components in the raw material,reaction temperature and pressure on industrialized continuous production of p-menthane were studied.
主要对工业化连续生产对烷的影响因素进行了研究,探讨了原料中重组分含量、反应温度、反应压力等不同条件对对烷的生成所产生的影响。
2)  p-menthane
对孟烷
1.
The main downstream products from the industrial dipentene were reviewed,such as:some kinds of polyester,fine chemical intermediates such as p-cymene,p-menthane and flavours such as carvone,terpinyl acetate and so forth,the main characteristics and applications were also described in the paper.
综述了工业双戊烯主要的下游产品聚酯树脂、精细化工中间体如对伞花烃、对孟烷以及香料如香芹酮,乙酸松油酯等的合成方法及反应条件,介绍了相应产品的主要性质、用途。
2.
By controlling reaction condition in different steps and hydrogenated with Raney Ni,most of components were converted into industrial grade p-menthane without purification.
实施分阶段控制反应条件,用雷尼镍催化,使大多数组分均加氢成对孟烷,无需提纯,即达到工业级的要求。
3.
For this reason, in this work, we attempted the oxidation of p-menthane and cumene to produce p-menthane hydroperoxi.
本工作以金属卟啉为催化剂,以对孟烷和异丙苯为反应底物,对金属卟啉催化氧化对孟烷和异丙苯制备异丙苯过氧化氢和对孟烷过氧化氢的性能进行了研究。
3)  3-p-Menthanol
对烷-3-醇
4)  p-menthane
对薄荷烷
5)  Tricyclo[8.2.2.24,7]hexadeca-4,6,10,12,13,15-hexaene
对环芳烷
6)  p-quinodimethane
对醌二甲烷
1.
his review covers the recent progress concerning the charge-transferpolymerization of electrophilic p-quinodimethane with electron-rich olefins.
概述了亲电性对醌二甲烷与富电子烯烃电荷转移聚合的最新进展,着重介绍聚合的一般特征、引发机理、链增长机理,以及单体结构、溶剂对聚合反应的影响。
补充资料:对孟烷
分子式:
CAS号:

性质:又称萜烷,对薄荷烷。单环单萜类分子碳骨架之一,不存在于自然界,是人工合成的化合物。有顺式和反式两种立体异构。顺式异构体沸点170.9℃(96.65kPa),反式异构体沸点170.55℃。对孟烷脱氢后,可得到薄荷烯、薄荷二烯(menthadiene)等天然单环单萜。

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