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Role of Nitrogen Dioxide in the Production of Sulfate during Chinese Haze-Aerosol Episodes

机译:二氧化氮在中国霾气溶胶事件中硫酸盐产生中的作用

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摘要

Haze events in China megacities involve the rapid oxidation of SO_(2) to sulfate aerosol. Given the weak photochemistry that takes place in these optically thick hazes, it has been hypothesized that SO_(2) is mostly oxidized by NO_(2) emissions in the bulk of pH > 5.5 aerosols. Because NO_(2)(g) dissolution in water is very slow and aerosols are more acidic, we decided to test such a hypothesis. Herein, we report that > 95% of NO_(2)(g) disproportionates [2NO_(2)(g) + H_(2)O(l) = H~(+) + NO_(3)~(–)(aq) + HONO (R1)] upon hitting the surface of NaHSO_(3) aqueous microjets for m / z 62) signals detected by online electrospray mass spectrometry, rather than oxidizing HSO_(3)~(–) ( m / z 81) to HSO_(4)~(–) ( m / z 97) in the relevant pH 3–6 range. Because NO_(2)(g) will be consumed via R1 on the surface of typical aerosols, the oxidation of S(IV) may in fact be driven by the HONO/NO_(2)~(–) generated therein. S(IV) heterogeneous oxidation rates are expected to primarily depend on the surface density and liquid water content of the aerosol, which are enhanced by fine aerosol and high humidity. Whether aerosol acidity affects the oxidation of S(IV) by HONO/NO_(2)~(–) remains to be elucidated.
机译:中国特大城市的霾事件涉及将SO_(2)快速氧化为硫酸盐气溶胶。考虑到在这些光学上较厚的雾中发生的弱光化学作用,已假设SO_(2)在大多数pH> 5.5气溶胶中主要被NO_(2)排放物氧化。由于NO_(2)(g)在水中的溶解非常缓慢,并且气溶胶的酸性更高,因此我们决定检验这种假设。在此,我们报告> 95%的NO_(2)(g)不成比例[2NO_(2)(g)+ H_(2)O(l)= H〜(+)+ NO_(3)〜(–)( aq)+ HONO(R1)]撞击在线电喷雾质谱法检测到的NaHSO_(3)水性微型喷嘴表面的m / z 62)信号,而不是氧化HSO_(3)〜(–)(m / z 81)在相关的pH 3-6范围内达到HSO_(4)〜(–)(m / z 97)。因为NO_(2)(g)将通过R1在典型气溶胶表面上被消耗,所以S(IV)的氧化实际上可能是由其中生成的HONO / NO_(2)〜(–)驱动的。预计S(IV)的非均相氧化速率主要取决于气溶胶的表面密度和液态水含量,而细气溶胶和高湿度会提高这些密度。气溶胶酸度是否会影响HONO / NO_(2)〜(–)对S(IV)的氧化尚待阐明。

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  • 来源
    《Environmental Science & Technology》 |2018年第5期|2686-2693|共8页
  • 作者单位

    Department of Environmental Science & Engineering, California Institute of Technology, Pasadena, California 91125, United States;

    Department of Environmental Science & Engineering, California Institute of Technology, Pasadena, California 91125, United States;

    Department of Environmental Science & Engineering, California Institute of Technology, Pasadena, California 91125, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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