Dicyclohexyl
- n.二环己基;双环己基
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Study on the improvement of synthetic craft of dicyclohexyl phthalate
DCHP合成工艺的改进研究
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Determination of Dicyclohexyl Phthalate in Water by Double Antibody Sandwich Fluorescence Immunoassay
抗体包被荧光免疫法测定水中的邻苯二甲酸二环己酯
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Review of recent development in lithium aluminium alloy iron disulfide thermal battery Synthesis of Dicyclohexyl Disulfide
铁与细胞因子锂铝-二硫化铁热电池发展现状
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New Process for Producing Dicyclohexyl Disulfide
二环己基二硫化物生产新工艺
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Acute chemical ophthalmitis caused by n , n ' - dicyclohexyl carbodiimide vapor
N,N′-二环己基二亚胺蒸气所致急性化学性眼炎
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Synthesis and characterization of anti-ozone agent n , n ′ - dicyclohexyl thiourea
抗臭氧剂N,N'-二环己基硫脲的合成及表征
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Synthesis and catalytic behavior of dicyclohexyl - dibenzo - 18 - crown - 6
二环己基二苯并-18-冠-6合成及催化性能
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Preparation of dicyclohexyl disulfide through the reaction of cyclohexyl chloride with sodium disulfide is given .
讨论了氯代环己烷与二硫化钠反应制备二环己基二硫化物的方法。
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Study on the Extractive Behaviour and Mechanism of Au_ (ⅲ) by N , N & Dicyclohexyl Thiourea
N,N&二环己基硫脲萃取Au(Ⅲ)的性能和机理的研究
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Preparation of Dicyclohexyl - 18 crown - 6
二环己基并18冠6的制备方法
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In the second part , we have designed and synthesized two pair of enantiomers with dicyclohexyl bone structure and studied their phase transition temperatures .
第二部分设计合成了两对对映体双环己基分子,并对其相态转变进行了研究。
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The main works of this thesis are presented as follows : 1 . Cyclohexyl formate and dicyclohexyl adipate were synthesized and also characterized by GC-MS.2 .
主要工作如下:1.合成了甲酸环己酯及己二酸二环己酯的标样,并采用GC-MS进行了表征。
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A gas chromatographic method was developed for determination of a 40 % triazophos aqueous emulsion , using 1.5 % SE-30 as the fixed phase and dicyclohexyl phthalate as the internal standard material .
采用气相色谱法分析40%三唑磷水乳剂,固定相为1.5%SE-30,内标物为邻苯二甲酸二环己酯,三唑磷色谱峰与内标物色谱峰的分离度为3.0。
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Four kinds of water samples ( tap water , lake water , river water and leachate from drinking bottles ) had been detected . The result showed that ELISA and FIA procedures can be used to detect dicyclohexyl phthalate in environmental samples . 3 .
用这两种方法测定四种水样(自来水、湖水、长江水和饮料瓶沥出液)中的邻苯二甲酸二环己酯,结果令人满意。
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The results showed that β, which has channels formed by 12 membered rings , had the highest conversion of cyclohexene and the lowest selectivity for cyclohexanol because of the high yields of dimeric of cyclohexene and dicyclohexyl ether .
结果表明,具有12元环孔道体系的β分子筛对环己烯的转化率(96%)最高,但对环己醇的选择性(354%)最差。