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硝酸介质中单甲基肼与亚硝酸的反应动力学
引用本文:魏艳,丛海峰,潘永军,矫海洋,贾永芬.硝酸介质中单甲基肼与亚硝酸的反应动力学[J].原子能科学技术,2008,42(10):887-690.
作者姓名:魏艳  丛海峰  潘永军  矫海洋  贾永芬
作者单位:中国原子能科学研究院 ;放射化学研究所,北京 ;102413
摘    要:采用分光光度法研究硝酸介质中单甲基肼(MMH)与亚硝酸(HNO2)的反应。HNO2和MMH反应动力学速率方程为-dc(HNO2)/dt=kc(H+)c1.1(NO-3)c1.1(MMH)c(HNO2)。当t=2.6℃、c(NO-3)=0.50mol/L时,反应速率常数k=(115±2)(mol/L)-3.2?s-1,反应活化能Ea=(37.8±0.1)kJ/mol。研究结果表明:在硝酸介质中,甲基肼与亚硝酸能快速反应;提高酸度、MMH浓度或硝酸根浓度均有利于亚硝酸的还原。

关 键 词:单甲基肼    亚硝酸    反应动力学
收稿时间:2007-05-29
修稿时间:2007-07-12

Reaction Kinetics of Mono-methylhydrazine With Nitrous Acid in Nitric Acid Medium
WEI Yan,CONG Hai-feng,PAN Yong-jun,JIAO Hai-yang,JIA Yong-fen.Reaction Kinetics of Mono-methylhydrazine With Nitrous Acid in Nitric Acid Medium[J].Atomic Energy Science and Technology,2008,42(10):887-690.
Authors:WEI Yan  CONG Hai-feng  PAN Yong-jun  JIAO Hai-yang  JIA Yong-fen
Affiliation:China Institute of Atomic Energy, P. O. Box 275-26, Beijing 102413, China
Abstract:The oxidation of mono-methylhydrazine (MMH) with nitrous acid in nitric acid medium was researched. The rate equation was determined as follows: -dc(HNO2)/dt=kc(H+)c1.1(NO-3)c1.1(MMH)c(HNO2). The k is (115±2) (mol/L)-3.2?s-1 and the corresponding activation energy Ea is (37.8±0.1) kJ/mol with the nitrate concentration of 0.50 mol/L at the temperature of 2.6 ℃. The result indicates that the oxidation of MMH with nitrous acid is fast. The increase in the acidity and the concentration of MMH or NO-3 can speed the reduction of nitrous acid.
Keywords:mono-methylhydrazine  nitrous acid  reaction kinetics
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