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The adsorption of peroxynitric acid on ice between 230 K and 253 K

机译:在230 k和253k之间的冰上的过氧化物酸的吸附

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Peroxynitric acid uptake to ice and snow has been proposed to be a major loss process from the atmosphere with impacts on the atmospheric oxidation capacity. Here we present results from a laboratory study on the interaction of peroxynitric acid with water ice at low concentration. Experiments were performed in a coated wall flow tube at atmospheric pressure and in the environmentally relevant temperature range of 230 K to 253 K. The interaction was found to be fully reversible and decomposition was not observed. Analysis based on the Langmuir adsorption model showed that the partitioning of peroxynitric acid to ice is orders of magnitude lower than of nitric acid and similar to nitrous acid partitioning behavior. The partition coefficient (KLinC) and its temperature dependency can be described by 3.74 × 1012 × e(7098/T) [cm]. Atmospheric implications are discussed and show that the uptake to cirrus clouds or to snow-packs in polar areas is an important sink for peroxynitric acid in the environment.
机译:已经提出过氧化酸的冰和雪的吸收,是从大气影响到大气氧化能力的大气层的主要损失过程。在这里,我们提出了对低浓度下水冰的过氧化物与水冰相互作用的结果。在涂覆的壁流管下在大气压下进行实验,并且在环境相关的温度范围内为230k至253k。发现相互作用是完全可逆的并且未观察到分解。基于Langmuir吸附模型的分析表明,过氧化酸对冰的分配是低于硝酸的数量级,并且与亚硝酸分配行为相似。分区系数(klinc)及其温度依赖性可以通过3.74×1012×e(7098 / t)[cm]来描述。讨论了大气影响,并表明对卷云云或极地区域的雪包的吸收是环境中过氧化物的重要汇。

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