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The reaction of methylene radicals in their 3B1 electronic ground state with molecular NO was studied. Pure CH2(~X3B1) radicals were produced by UV photolysis of ketene at 351 nm. The products were measured by Time-Resolved Fourier Transform Infrared (TR-FTIR) spectrometer. CO、OH、NH2 and HOCN or its isomer HNCO were found as primary products and several possible channels of this reaction were suggested.  相似文献   
2.
Cth和NO都具有未配对电子,它们之间的反应属于自由基之间的反应.该反应可能经历的通道很多,因此研究这个反应,具有重要的学术价值.另一方面,烃类在燃烧过程中可热解成CH、CW、C:H或CIn等自由基碎片’‘’,亚甲基CW与NO的反应是重要的基元反应之一.除此之外NO是重要的环境污染物,在大气中低浓度NO能够存在较长时间”’,可继续与CHZ自由基发生反应.因此就环境保护方面来说,CIn自由基与NO反应的研究也有较大的现实意义.虽然以前很多人都通过实验测出过CW与NO总反应的速车常数’‘,’-’‘,但关于反应动力学方面的…  相似文献   
3.
CH2是燃烧和大气光化学中重要的自由基之一[1].在燃烧过程中,CH2自由基由碳氢化合物分子热解或由O原子和C2H2等反应生成.这种高活性的中间体,又可进一步与燃烧过程中其它重要物质如NOx(NO、NO2、N2O)发生反应.在低温燃烧过程中,N2O是NOx存在的主要形式,所以,研究CH2自由基与N2O的反应,对于了解燃烧机制有重要意义.就我们所知,关于CHZ和N20的反应,国内外还未见文献报导.本文从态-态反应的层次上,开展基电子态CH2(X3B1)自由基与N2O反应的实验研究.我们利用351um紫外激光光解CH2CO产生CH2自由基,这种方法…  相似文献   
4.
The reaction dynamics of methylene radicalCH2((x)3B1)with N2O was investigated by Time Resolved Fourier Transform Infrared Spectroscopy(TR-FTIRS). Pure CH2((x)3B1) radical was produced via laser photolysis of ketene at 351 nm.. Nascent vibrationally excited products CO , NO and HCN were observed.. Some reaction pathways which may lead to these products were proposed and a possible reaction mechanism was outlined..  相似文献   
5.
用时间分辨富里叶红外发射谱久,研究了248nm激光光解甲酸体系,检测到振动激发态产物CO,CO2及H2O的红外发光,由引得到光解的两个通道:HCOOH→CO+H2O及HCOOH→CO+H,光谱拟合获得新生CO,CO2的振动布居,并求出两个通道的分支比。发现初生产物CO2的振动布居有明显反转,生成CO通道的贡献大于生成CO2的通道。  相似文献   
6.
The reaction of methylene radicals in their 3 B1 electronic ground state with molecular NO was studied. Pure CH2(X 3 B1 ) radicals were produced by UV photolysis of ketene at 351 nm. The products were measured by Time-Resolved Fourier Transform Infrared (TR-FTIR) spectrometer. CO.OH .NH2 and HOCN or its isomer HNCO were found as primary products and several possible channels of this reaction were suggested.  相似文献   
7.
The reaction dynamics of methylene radical CH2(X3B1) with N2O was investigated by Time-Resolved Fourier Transform Infrared Spectroscopy(TR-FTIRS). Pure CH2(X3B1) radicalwas produced via laser photolysis of ketene at 351 nm. Nascent viabrationally excited products CO, NO and HCN were observed. Some reaction pathways which may lead to these products were proposed and a possible reaction mechanism was outlined.  相似文献   
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