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首页> 外文期刊>Atmospheric environment >Seasonal variations of water soluble composition (WSOC, Hulis and WSIIs) in PM1 and its implications on haze pollution in urban Shanghai, China
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Seasonal variations of water soluble composition (WSOC, Hulis and WSIIs) in PM1 and its implications on haze pollution in urban Shanghai, China

机译:中国上海市区PM1中水溶性成分(WSOC,Hulis和WSIIs)的季节性变化及其对雾霾的影响

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摘要

A year-long PM 1 samples were collected at ECUST campus from April 2013 to February 2014 in urban Shanghai, China. Annual PM1 was (49.8 +/- 31.8) mu gm(-3), comprising of water soluble organic carbon (WSOC), humic-like substances-carbon (Hulis-C), total water soluble inorganic ions (WSIIs) and liquid water content (LWC). Corresponding values were (5.51 +/- 3.72) mu gm(-3), (2.20 +/- 1.71) mu gm(-3), (22.52 +/- 15.22) mu gm(-3) and (19.0 +/- 19.2) mu gm(-3), respectively. Seasonal variation of PM1 was winter > spring > autumn > summer, while WSOC, Hulis-C, total WSIIs and LWC were highest in winter, with insignificant differences between spring, summer and autumn. Hulis-C and WSOC in PM1 on the serious haze day were found to be 4.4 and 2.5 times higher than those on the clear days, implying that Hulis might be very important for haze pollution. Among total WSIIs, sulfate was more abundant than nitrate on clear days while nitrate eventually surpassed sulfate in haze episodes. LWC in aerosol was significantly negative correlated with visibility and had strong relationship with nitrate and sulfate. It should be noted that LWC is four times sensitive to nitrate than sulfate, hence higher nitrate on haze days in Shanghai might facilitate the hygroscopic growth of aerosol. (C) 2015 Elsevier Ltd. All rights reserved.
机译:2013年4月至2014年2月,在中国上海市区的ECUST校园收集了为期一年的PM 1样品。年度PM1为(49.8 +/- 31.8)μgm(-3),由水溶性有机碳(WSOC),类腐殖质-碳(Hulis-C),总水溶性无机离子(WSIIs)和液态水组成内容(LWC)。相应的值为(5.51 +/- 3.72)mu gm(-3),(2.20 +/- 1.71)mu gm(-3),(22.52 +/- 15.22)mu gm(-3)和(19.0 +/-) 19.2)分别为g gm(-3)。 PM1的季节变化是冬季>春季>秋季>夏季,而冬季的WSOC,Hulis-C,总WSII和LWC最高,春季,夏季和秋季之间的差异不明显。发现在严重雾霾天气下PM1中的Hulis-C和WSOC分别是晴天的4.4和2.5倍,这表明Hulis对雾霾污染可能非常重要。在所有WSII中,晴天时硫酸盐比硝酸盐含量更高,而在霾事件中硝酸盐最终超过硫酸盐。气溶胶中的LWC与能见度显着负相关,并且与硝酸盐和硫酸盐有很强的关系。应当指出的是,轻质水对硝酸盐的敏感性是硫酸盐的四倍,因此上海雾霾天气硝酸盐含量较高可能促进了气溶胶的吸湿性生长。 (C)2015 Elsevier Ltd.保留所有权利。

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