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Seasonal characteristics of biomass burning contribution to Beijing aerosol 被引量:5
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作者 Cachier H. 《Science China Chemistry》 SCIE EI CAS 2005年第5期481-488,共8页
110 atmospheric aerosol samples collected from November 1997 to October 1998 at two monitoring sites (Ming Tomb and Temple Heaven) in Beijing were analyzed for the con-centration of organic carbon (OC) and water-solub... 110 atmospheric aerosol samples collected from November 1997 to October 1998 at two monitoring sites (Ming Tomb and Temple Heaven) in Beijing were analyzed for the con-centration of organic carbon (OC) and water-soluble potassium (K+). Four biomass burning epi-sodes, namely spring farming, summer harvesting, autumn harvesting and leaf falling were iden-tified using the tracer of K+. Biomass burning contribution to the urban aerosol OC concentration in Beijing was estimated by regression analysis of OC and K+ concentration data. The slopes of regression analysis are similar at the two monitoring sites, presenting regional characteristics. Severe air pollution event occurred during autumn harvesting period in 1998 with substantial secondary OC formed, in which biomass burning was one of the major emission sources. Bio-mass burning is a prominent source of aerosol OC in Beijing and is featured by its seasonality and periodicity. It may contribute as much as 30 to 60 percent of the total OC in typical cases. 展开更多
关键词 biomass burning WATER-SOLUBLE potassium OC atmospheric aerosol regression analysis.
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北京市大气颗粒物中生物质燃烧排放贡献的季节特征 被引量:24
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作者 郑晓燕 刘咸德 +3 位作者 赵峰华 段凤魁 虞统 H.Cachier 《中国科学(B辑)》 CSCD 北大核心 2005年第4期346-352,共7页
研究了1997年11月~1998年10月期间一年四季北京郊区十三陵(一号站)和市区天坛(五号站)采集的110个大气颗粒物样品中有机碳(OC)与水溶性钾(K+)的质量浓度变化. 利用指示物K+定性识别了春耕(清明)、麦收、秋收、秋季落叶等4个生物质燃烧... 研究了1997年11月~1998年10月期间一年四季北京郊区十三陵(一号站)和市区天坛(五号站)采集的110个大气颗粒物样品中有机碳(OC)与水溶性钾(K+)的质量浓度变化. 利用指示物K+定性识别了春耕(清明)、麦收、秋收、秋季落叶等4个生物质燃烧过程. 对OC与K+数据进行了回归分析, 用以表征生物质燃烧的特征, 并在此基础上评估了生物质燃烧对北京市大气颗粒物OC的贡献. 春耕(清明)、麦收、秋季落叶期间回归斜率在两站点之间比较一致, 表现了生物质燃烧排放的区域性特点. 回归截距的差异反映了两个站点的不同属性. 1998年秋收时段北京市发生重污染事件, 二次有机碳大量形成, 生物质燃烧是主要排放源之一. 生物质燃烧排放具有季节性与周期性, 是北京市大气颗粒物有机碳的一个重要来源, 在生物质燃烧典型样品中, 其贡献高达三至六成. 展开更多
关键词 生物质燃烧 水溶性钾 有机碳 大气颗粒物 回归分析 燃烧排放 季节特征 北京市 定性识别 浓度变化
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