首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Formation of Hydrogen Polyoxides As Constituents of Peroxy Radical Condensate upon Low-Temperature Interaction of Hydrogen Atoms with Liquid Ozone
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Formation of Hydrogen Polyoxides As Constituents of Peroxy Radical Condensate upon Low-Temperature Interaction of Hydrogen Atoms with Liquid Ozone

机译:氢原子与液态臭氧的低温相互作用形成过氧化氢作为过氧自由基缩合物的成分

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The composition of low-temperature condensates obtained by the reaction of hydrogen atoms with liquid ozone has been determined from the Raman spectra and data on the molar ratio of O_2 to H_2O_2 in the decomposition products. The main constituents are hydrogen tetroxide H_2O_4, trioxide H2O3, and peroxide H_2O_2 in comparable amounts and also water H_2O. The mechanism and quantitative kinetic model of their formation have been proposed. H_2O_4, H2O3, and H_2O_2 are formed in the diffusion-controlled reactions between OH and HO_2 in the liquid ozone layer and stabilized by transfer to the solid phase. OH and HO_2 radicals are generated via a sequence of the reactions initiated by the interaction H + O_3(liq). The model adequately reproduces the properties of the real condensates.
机译:通过拉曼光谱和分解产物中O_2与H_2O_2的摩尔比数据确定了氢原子与液态臭氧反应获得的低温缩合物的组成。主要成分是相当数量的四氧化氢H_2O_4,三氧化氢H2O3和过氧化物H_2O_2,以及水H_2O。提出了其形成机理和定量动力学模型。 H_2O_4,H2O3和H_2O_2是在液态臭氧层中OH和HO_2之间的扩散控制反应中形成的,并通过转移到固相而稳定。 OH和HO_2自由基是通过相互作用H + O_3(liq)引发的一系列反应生成的。该模型充分再现了实际冷凝物的特性。

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