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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Assessing known pathways for HO2 loss in aqueous atmospheric aerosols: Regional and global impacts on tropospheric oxidants
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Assessing known pathways for HO2 loss in aqueous atmospheric aerosols: Regional and global impacts on tropospheric oxidants

机译:评估已知途径HO2水损失大气气溶胶:地区性和全球性的影响在对流层氧化剂

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摘要

We present a study of the potential importance of known reaction pathways for HO2 loss in atmospheric aerosols. As a baseline case, we calculate the reaction probability for HO2 loss by its self-reaction in aqueous particles. Detailed calculations assessed the effects of aerosol pH, temperature, particle size, and aqueous phase diffusion limitations on the rate of HO2 loss by this process. An algebraic parameterization of the reaction probability, γ HO2, due to self-reaction is valid for aerosol pH 0.1 in the upper troposphere and γ HO2 < 0.01 in the extra-polar lower troposphere. We contrast the self-reaction pathway with catalytic oxidation by dissolved Cu ions. Using IMPROVE network data we assess the atmospheric importance and uncertainties associated with the Cu pathway. Simulations of tropospheric chemistry were performed using the GEOS-Chem global chemical transport model with different parameterizations of γ HO2. Relative to simulations where γ HO2 = 0 for all aerosol types, assuming that only the aqueous-phase self-reaction proceeds on pollution and sea salt particles causes global annual mean differences in surface OH, HO2, and H2O2 of ?1, ?2, and +2%, respectively. These minor effects of heterogeneous loss are significantly different from a simulation assuming γ HO2 = 0.2 on all particles, as is currently recommended, with implications for predictions of regional HOx levels, ozone production rates and their sensitivity to NOx.
机译:我们提出一个研究的潜在的重要性已知的反应途径HO2损失大气气溶胶。计算HO2反应概率的损失由其self-reaction在水粒子。详细的计算评估的影响气溶胶的pH值、温度、粒径和水相扩散速率限制HO2损失的这一过程。参数化反应的概率,γHO2,由于self-reaction气溶胶pH值是有效的 0.1上对流层和γHO2 extra-polar < 0.01对流层较低。途径与催化氧化溶解铜离子。大气的重要性和不确定性与铜通路有关。对流层化学进行使用GEOS-Chem全球化学传输模型不同的γHO2参数化。所有气溶胶模拟在γHO2 = 0类型,假设只有水相在污染和海盐self-reaction收益粒子引起全球年平均分歧在表面哦、HO2和过氧化氢的? 1 ? 2,+ 2%,分别。异构损失是明显不同的从模拟假设γHO2 = 0.2在所有粒子,目前建议,影响区域HOx预测臭氧生产水平,利率和他们对氮氧化物的敏感性。

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