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In-situ NMR Study of Hydrothermal Reactions of Hazardous Chlorinated Organic Compounds: CH2Cl2 (INTERFACE SCIENCE-Solutions and Interfaces)

机译:危险氯化有机物CH2Cl2的水热反应的原位NMR研究(界面科学-溶液和界面)

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摘要

Hydrothermal decomposition of a hazardous chlorinated organic compound, dichloromethane, has been investigated using in-situ NMR spectroscopy. It is found that the hydrolysis of dichloromethane yields methanediol as an intermediate. Methanediol is a hydrated form of formaldehyde and easily transformed into methanol and formic acid under basic conditions. In the temperature range of 70-140 °C, the Cannizzaro-type reaction occurs: methanediol produces the reduced form, methanol and the oxydized form, formic acid. At higher temperatures between 200 and 250 °C, on the other hand, two methanediol molecules form glycolic acid which has a new C-C bond. The reaction rate constants and activation energies for the dechlorination and the Cannizzaro-type reactions have been obtained.
机译:使用原位NMR光谱研究了危险的氯化有机化合物二氯甲烷的水热分解。发现二氯甲烷的水解产生甲烷二醇作为中间体。乙二醇是甲醛的水合形式,在碱性条件下容易转化为甲醇和甲酸。在70-140°C的温度范围内,会发生Cannizzaro型反应:甲烷二醇生成还原形式的甲醇和氧化形式的甲酸。另一方面,在200至250°C的较高温度下,两个甲烷二醇分子形成具有新C-C键的乙醇酸。已经获得了脱氯反应和坎尼扎罗反应的反应速率常数和活化能。

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