DOI: 10.1016/j.atmosenv.2013.12.026
Scopus记录号: 2-s2.0-84892463337
论文题名: Historical industrial emissions of non-methane volatile organic compounds in China for the period of 1980-2010
作者: Qiu K ; , Yang L ; , Lin J ; , Wang P ; , Yang Y ; , Ye D ; , Wang L
刊名: Atmospheric Environment
ISSN: 0168-2563
EISSN: 1573-515X
出版年: 2014
卷: 86 起始页码: 102
结束页码: 112
语种: 英语
英文关键词: China
; Emission inventory
; Industrial emissions
; NMVOCs
Scopus关键词: China
; Emission inventories
; Industrial processs
; Industrial sources
; Machinery equipments
; Mechanical equipment
; NMVOCs
; Non-methane volatile organic compounds
; Architectural design
; Economics
; Industry
; Machinery
; Petroleum refineries
; Population statistics
; Industrial emissions
; non methane volatile organic compound
; unclassified drug
; volatile organic compound
; atmospheric pollution
; economic growth
; emission inventory
; GIS
; industrial emission
; industrialization
; pollutant source
; satellite data
; spatial distribution
; spatial resolution
; volatile organic compound
; air pollution
; article
; China
; economic development
; environmental planning
; geographic information system
; industrialization
; machine
; pollution control
; printing
; priority journal
; storage
; China
Scopus学科分类: Environmental Science: Water Science and Technology
; Earth and Planetary Sciences: Earth-Surface Processes
; Environmental Science: Environmental Chemistry
英文摘要: This paper presents a new classification of industrial sector on basis of a source-tracing method for the historical industrial emissions of non-methane volatile organic compounds (NMVOCs). The industrial sources were divided into four major source categories: production of NMVOCs, storage and transport, industrial processes using NMVOCs as raw materials, and processes using NMVOCs-containing products. Multiyear emission inventories of NMVOCs from industrial sources were established for the period of 1980-2010 in China, covering 98 contributing industrial sources. The inventories were developed by the emission factor method, and further gridded at a spatial resolution of 50km×50km based on GIS methodology, using population data as spatial surrogate. The result showed that China's industrial NMVOCs emissions had increased by 11.6 times at an average annual rate of 8.5% from 1.15Tg in 1980 to 13.35Tg in 2010. The four major source categories generated 19.6% (2.63Tg, production of NMVOCs), 9.6% (1.295Tg, storage and transport), 13.2% (1.769Tg, industrial processes using NMVOCs as raw materials), and 57.4% (7.662Tg, processes using NMVOCs-containing products) of the total emissions from China in 2010. Moreover, the top four industrial emissions sources were oil refinery, architectural decoration, machinery equipment and printing, accounted for 48.3% all together. With respect to the spatial distribution, the emissions mostly occurred in the eastern, northern and southern parts of China, all being much higher than that in the western part. The top four emission provinces were Shandong, Jiangsu, Guangdong, and Zhejiang, accounting for 38.3% of the national emissions. As for the past 30 years, the national industrial NMVOCs emissions increased year-by-year, being in pace with the accelerated industrialization process and the sharp economic growth, especially the rapid expansion of the high-emission industries. Particularly, the oil refinery, product oil and solvent distribution, architectural decoration, and mechanical equipment manufacture became the four largest contributors, accounting for 15.9-34.3%, 6.5-10.2%, 7-8%, and 6-7% of national industrial NMVOCs. © 2013 Elsevier Ltd.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/80730
Appears in Collections: 气候变化事实与影响
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作者单位: College of Environment and Energy, South China University of Technology, Guangzhou 51006, China; Guangdong Province Key Laboratory of Atmospheric Environment and Pollution Control, Guangzhou 51006, China
Recommended Citation:
Qiu K,, Yang L,, Lin J,et al. Historical industrial emissions of non-methane volatile organic compounds in China for the period of 1980-2010[J]. Atmospheric Environment,2014-01-01,86