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二氧化三氮(N_3O_2)中性分子和离子的一些重要反应过程的理论研究 被引量:1
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作者 张浩 孙延波 +1 位作者 李泽生 孙家锺 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2007年第1期132-135,共4页
二重态的N3O2中性分子作为中间体,在N3O2阴离子的光解离反应和NO+N2O N2+NO2反应中均起重要作用.在CCSD(T)/6-311G(d,p)//B3LYP/6-311G(d,p)+ZPE的水平上,对这两个反应进行了理论计算.结果表明,在N3O2阴离子的光解离反应中,该阴离子先... 二重态的N3O2中性分子作为中间体,在N3O2阴离子的光解离反应和NO+N2O N2+NO2反应中均起重要作用.在CCSD(T)/6-311G(d,p)//B3LYP/6-311G(d,p)+ZPE的水平上,对这两个反应进行了理论计算.结果表明,在N3O2阴离子的光解离反应中,该阴离子先在光照下解离为与其具有相同的W构型的中性分子和一个电子,这个中性分子是一个过渡态,它将打破C2v构型变成具有Cs对称性的W型中间异构体,然后再经过一个过渡态,裂解成N2O+NO两个小分子.这个裂解过程的能垒非常低(5.96 kJ/mol),因此在实验中很难检测到W型的中间异构体.在另一个重要的[N3O2]体系的反应(NO+N2O N2+NO2)中,找到了两条反应通道,其中不经过中间异构体的一步转化通道更为可行. 展开更多
关键词 中性二氧化三氮(N3O2)分子 光解离 稳定中间体 转化 一步转化
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联产三氯氧磷和氯化亚砜新工艺的研究 被引量:1
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作者 刘方 单晓军 +1 位作者 范大和 曹淑红 《化工生产与技术》 CAS 2000年第5期19-20,共2页
以硫酰氯和三氯化磷为原料,采用间歇式一步转化法联产三氯氧磷和氯化亚砜,在 45~ 65℃,常压条件下 7~ 8 h内,将三氯化磷滴加入硫酰氯中进行反应,并保温 0. 5 h,可分别得到 98. 5%的氯化亚砜, 99%以上的三氯氧磷,收率均在 9... 以硫酰氯和三氯化磷为原料,采用间歇式一步转化法联产三氯氧磷和氯化亚砜,在 45~ 65℃,常压条件下 7~ 8 h内,将三氯化磷滴加入硫酰氯中进行反应,并保温 0. 5 h,可分别得到 98. 5%的氯化亚砜, 99%以上的三氯氧磷,收率均在 98%以上。 展开更多
关键词 三氯氧磷 氯化亚砜 联产 硫酰氯 一步转化
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离子迁移膜法制合成气
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《现代化工》 CAS CSCD 北大核心 2003年第7期66-66,共1页
关键词 离子迁移膜法 制备 合成气 美国空气产品和化学品公司 一步转化 多组分 金属氧化物
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Preparation of MIL-88B(Fe_(x),Co_(1‒x))catalysts and their application in one-step liquid-phase methanol oxidation to methyl formate using H_(2)O_(2)
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作者 Jianfang Liu Zhenzhen Ran +1 位作者 Qiyan Cao Shengfu Ji 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第12期2254-2264,共11页
The selective oxidation of methanol to methyl formate is one of the most attractive processes to obtain value-added methanol-downstream products.The development of highly efficient and stable catalysts is critical for... The selective oxidation of methanol to methyl formate is one of the most attractive processes to obtain value-added methanol-downstream products.The development of highly efficient and stable catalysts is critical for this transformation.In this study,a series of MIL-88B(Fe_(x),Co_(1‒x))bimetallic catalysts with different Fe/Co molar ratios were prepared through a one-pot hydrothermal method.X-ray diffraction,scanning electron microscopy,high-resolution transmission electron microscopy,energy dispersive spectroscopy,Fourier transform infrared spectroscopy,X-ray photoelectron spectroscopy,N2 adsorption-desorption,and inductively coupled plasma-mass spectrometry characterization were performed to elucidate the structure of the catalysts.The activity of the catalysts were assessed in the one-step oxidation of methanol to methyl formate with H_(2)O_(2)in a liquid-phase batch reactor.The results show that the MIL-88B(Fe_(x),Co_(1‒x))catalysts exhibit uniform needle-like morphologies with an average length and width of 400-600 nm and 100-150 nm,respectively.Co^(2+)is incorporated into the framework by partially replacing Fe^(3+)in MIL-88B.Moreover,the catalyst efficiently promoted the conversion of methanol to methyl formate.When MIL-88B(Fe_(0.7),Co_(0.3))catalyst was used with a molar ratio of H_(2)O_(2)to methanol of 0.5 at 80℃for 60 min,34.8%methanol conversion was achieved,and the selectivity toward methyl formate was 67.6%.The catalysts also showed great stability with a steady conversion and selectivity even after four cycles.The preliminary oxidation mechanism was also studied.It was determined that H_(2)O_(2)is first adsorbed on the Fe^(3+)sites and subsequently activates these sites.Methanol is adsorbed by the O atoms of the framework through hydrogen bonding and is gradually oxidized to formic acid.Subsequently,formic acid reacts with the residual methanol at the Fe^(3+)and Co^(2+)Lewis acid sites to form methyl formate. 展开更多
关键词 Bimetal-organic frameworks Methanol oxidation Liquid phase One-step transformation Methyl formate
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