4.7 Article

Source-specific speciation profiles of PM2.5 for heavy metals and their anthropogenic emissions in China

Journal

ENVIRONMENTAL POLLUTION
Volume 239, Issue -, Pages 544-553

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2018.04.047

Keywords

Heavy metals; Emission; Source profile; PM2.5

Funding

  1. National Key R & D program of China [2016YFC0207601]
  2. National Research Program for Key Issues in Air Pollution Control [DQGG0301]
  3. National Science Foundation of China [21625701, 21521064]
  4. Shanghai Environmental Protection Bureau [2016-12]

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Heavy metals are concerned for its adverse effect on human health and long term burden on biogeochemical cycling in the ecosystem. In this study, a provincial-level emission inventory of 13 kinds of heavy metals including V, Cr, Mn, Co, Ni, Cu, Zn, As, Cd, Sn, Sb, Ba and Pb from 10 anthropogenic sources was developed for China, based on the 2015 national emission inventory of primary particulate matters and source category-specific speciation profiles collected from 50 previous studies measured in China. Uncertainties associated with the speciation profiles were also evaluated. Our results suggested that total emissions of the 13 types of heavy metals in China are estimated at about 58000 ton for the year 2015. The iron production is the dominant source of heavy metal, contributing 42% of total emissions of heavy metals. The emissions of heavy metals vary significantly at regional scale, with largest amount of emissions concentrated in northern and eastern China. Particular, high emissions of Cr, Co, Ni, As and Sb (contributing 8%-18% of the national emissions) are found in Shandong where has large capacity of industrial production. Uncertainty analysis suggested that the implementation of province-specific source profiles in this study significantly reduced the emission uncertainties from (-89%, 289%) to (-99%, 91%), particularly for coal combustion. However, source profiles for industry sectors such as nonmetallic mineral manufacturing are quite limited, resulting in a relative high uncertainty. The high resolution emission inventories of heavy metals are essential not only for their distribution, deposition and transport studies, but for the design of policies to redress critical atmospheric environmental hazards at local and regional scales. Detailed investigation on source-specific profile in China are still needed to achieve more accurate estimations of heavy metals in the future. (C) 2018 Elsevier Ltd. All rights reserved.

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