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Characterization of PM2.5 in Delhi: role and impact of secondary aerosol, burning of biomass, and municipal solid waste and crustal matter

机译:德里PM2.5的表征:二次气溶胶,生物质燃烧的作用及影响,以及城市固体废物和地壳事宜

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Delhi is one among the highly air polluted cities in the world. Absence of causal relationship between emitting sources of PM2.5 and their impact has resulted in inadequate actions. This research combines a set of innovative and state-of-the-art analytical techniques to establish relative predominance of PM2.5 sources. Air quality sampling at six sites in summer and winter for 40 days (at each site) showed alarmingly high PM2.5 concentrations (340 +/- 135 mu g/m(3)). The collected PM2.5 was subjected to chemical speciation including ions, metals, organic and elemental carbons which followed application of chemical mass balance technique for source apportionment. The source apportionment results showed that secondary aerosols, biomass burning (BMB), vehicles, fugitive dust, coal and fly ash, and municipal solid waste burning were the important sources. It was observed that secondary aerosol and crustal matter accounted for over 50% of mass. The PM2.5 levels were not solely result of emissions from Delhi; it is a larger regional problem caused by contiguous urban agglomerations. It was argued that emission reduction of precursors of secondary aerosol, SO2, NOx, and volatile organic compounds, which are unabated, is essential. A substantial reduction in BMB and suspension of crustal dust is equally important to ensure compliance with air quality standards.
机译:德里是世界上高空污染城市中的一个。缺乏PM2.5的发射来源之间的因果关系,其影响导致行动不足。本研究结合了一套创新和最先进的分析技术来建立PM2.5来源的相对偏向。空气质量在夏季和冬季六个站点40天(在每个位点)采样表明高得惊人PM2.5浓度(340 +/- 135微米克/米(3))。对收集的PM2.5进行了化学品种,包括离子,金属,有机和元素碳,其在施加化学质量平衡技术中进行源分配。源分摊结果表明,二次气溶胶,生物质燃烧(BMB),车辆,逃逸粉尘,煤和粉煤灰,以及市政固体废物燃烧是重要的来源。观察到二级气溶胶和地壳问题占质量的50%以上。 PM2.5水平不仅仅是从德里排放的排放;它是由连续的城市聚集造成的更大的区域问题。有人认为,二次气溶胶,SO 2,NOx和挥发性有机化合物的前体的排放减少是必需的。 BMB的大幅减少和地壳粉尘的悬浮液同样重要,以确保符合空气质量标准。

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