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Hydroxyl radicals from secondary organic aerosol decomposition in water

机译:羟基自由基来自次级有机气溶胶分解在水中

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We found that ambient and laboratory-generated secondary organic aerosols (SOA) form substantial amounts of OH radicals upon interaction with liquid water, which can be explained by the decomposition of organic hydroperoxides. The molar OH yield from SOA formed by ozonolysis of terpenes (α-pinene, β-pinene, limonene) is ?~??0.1 % upon extraction with pure water and increases to ?~??1.5 % in the presence of Fe2+ ions due to Fenton-like reactions. Upon extraction of SOA samples from OH photooxidation of isoprene, we also detected OH yields of around ?~??0.1 %, which increases upon addition of Fe2+. Our findings imply that the chemical reactivity and aging of SOA particles is strongly enhanced upon interaction with water and iron. In cloud droplets under dark conditions, SOA decomposition can compete with the classical H2O2 Fenton reaction as the source of OH radicals. Also in the human respiratory tract, the inhalation and deposition of SOA particles may lead to a substantial release of OH radicals, which may contribute to oxidative stress and play an important role in the adverse health effects of atmospheric aerosols.
机译:我们发现,在与液态水相互作用时,环境和实验室产生的二次有机气溶胶(SOA)形成大量OH基团,这可以通过有机氢过氧化物的分解来解释。通过臭氧(α-折烯,β-柱烯,柠檬烯)臭氧溶液形成的SOA的摩尔OH产率是β-Δω0.1%在用纯水萃取时,在Fe2 +离子的存在下增加至Δω.1.5%对芬顿的反应。从异戊二烯的OH光氧化中提取SOA样品后,我们也检测到oh产率,其约为0.1%,加入Fe2 +后增加。我们的研究结果意味着在与水和铁相互作用时,SOA颗粒的化学反应性和老化的老化被强烈提高。在暗条件下的云液滴中,SOA分解可以与古典H2O2 Fenton反应竞争为OH激进的源。同样在人类呼吸道中,SOA颗粒的吸入和沉积可能导致OH基团的显着释放,这可能有助于氧化应激并在大气气溶胶的不良健康影响中发挥重要作用。

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