首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Fast photolysis of carbonyl nitrates from isoprene
【24h】

Fast photolysis of carbonyl nitrates from isoprene

机译:从异戊二烯的锡硝基羰基羰基的快速光解

获取原文
           

摘要

Photolysis is shown to be a major sink for isoprene-derived carbonyl nitrates, which constitute an important component of the total organic nitrate pool over vegetated areas. Empirical evidence from published laboratory studies on the absorption cross sections and photolysis rates of α-nitrooxy ketones suggests that the presence of the nitrate group (i) greatly enhances the absorption cross sections and (ii) facilitates dissociation to a point that the photolysis quantum yield is close to unity, with O–NO2 dissociation as a likely major channel. On this basis, we provide new recommendations for estimating the cross sections and photolysis rates of carbonyl nitrates. The newly estimated photo rates are validated using a chemical box model against measured temporal profiles of carbonyl nitrates in an isoprene oxidation experiment by Paulot et al. (2009). The comparisons for ethanal nitrate and for the sum of methacrolein- and methyl vinyl ketone nitrates strongly supports our assumptions of large cross-section enhancements and a near-unit quantum yield for these compounds. These findings have significant atmospheric implications: the photorates of key carbonyl nitrates from isoprene are estimated to be typically between ~ 3 and 20 times higher than their sink due to reaction with OH in relevant atmospheric conditions. Moreover, since the reaction is expected to release NO2, photolysis is especially effective in depleting the total organic nitrate pool.
机译:将光解显示为异戊二烯衍生羰基硝酸盐的主要水槽,其构成植被区域的总有机硝酸盐池的重要组成部分。来自发表的实验室研究的经验证据对α-硝基氧基酮的吸收横截面和光解率表明,硝酸盐基团(I)的存在大大增强了吸收横截面,(ii)促进解离光解量子产量的点靠近团结,O-No2作为可能的主要渠道解离。在此基础上,我们提供估计硝酸羰基横截面和光解率的新建议。使用Paulot等人在异戊二烯氧化实验中,使用化学盒模型验证新估计的光速率.Paulot等人的异戊二烯氧化实验中的测量时间曲线。 (2009)。乙酸硝酸盐和甲基甲基乙烯基酮硝酸盐和硝酸盐的比较强烈支持我们对这些化合物的大横截面增强和近单位量子产率的假设。这些发现具有显着的大气意义:估计来自异戊二烯的硝酸盐硝酸羰的光溶液通常在与相关的大气条件中的oh中的反应高于其水槽的〜3至20倍。此外,由于预期反应释放NO2,因此光解在耗尽总有机硝酸盐池中特别有效。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号