• 间苯二甲氯化反应过程提出了合理假设简化,从反应机理出发建立了动力学数学模型

    A mathematic modelling of gas catalysis kinetics ofm phthalic nitrile chloration reaction is established based on the hypothesis and simplification of the reaction.

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  • 二甲氯化反应过程提出了合理假设简化 ,从反应机理出发建立了一个动力学数学模型。

    The competition between addition and substitution in vapour phase chloridization reaction of prolence is analyzed on the base of essential principle in chemical thermodynamics and kinetics.

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  • 使用微萃取装置色谱电子捕获检测器测定饮用水氯仿氯化

    By using solid phase microextraction instrument, chloroform and tetrachloromethane in drinking water was detected in ECD of gas chromatography.

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  • 报道了活性炭载体,过渡金属无机盐复合催化剂条件下氯化碳与甲醇反应制备(一)甲烷的研究结果。

    Experimental results were reported here regarding the gas phase conversion of CTC to methyl chloride by using transition metal salt composite catalyst embedded on active carbon.

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  • 介绍了氯化聚氯乙烯树脂生产方法研究低温等离子体法制氯化聚氯乙烯的方法

    The production methods of chlorinated polyvinyl chloride resins were introduced. A new gas phase plasma method to prepare chlorinated polyvinyl chloride was studied.

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  • 方法激光溅射反应体系石墨固体靶,以氯化反应物,通过等离子体反应进行合成。结果从合成产物中分离表征了六氯苯。

    Metheds by laser ablating a heterogeneous reaction system which was consisted of solid graphite, liquid and gaseous tetrachloromethane, synthesis was carried out by plasma reaction.

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  • 应用气相色谱研究氯化溶液中的色谱分离分析性质,结果表明之作为标准用于甲醛分析可行的。

    The chromatographic characteristic in CCl 4 solution was studied. These results showed that this derivative could probably be a kind of standard for the measurement of trace formaldehyde in air.

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  • 本文系统地描述了白炭黑在工业中的应用介绍现有的白炭黑制备方法脱石原料法、以四氯化硅为原料的气相法、以水玻璃原料的沉淀法等。

    The authors introduce its application in many fields and its current preparation techniques, e. g. taking montmorillonite as raw material to prepare amorphous silica by NaOH liquor lixiviation;

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  • 本文系统地描述了白炭黑在工业中的应用介绍现有的白炭黑制备方法脱石原料法、以四氯化硅为原料的气相法、以水玻璃原料的沉淀法等。

    The authors introduce its application in many fields and its current preparation techniques, e. g. taking montmorillonite as raw material to prepare amorphous silica by NaOH liquor lixiviation;

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