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- W2891365354 abstract "Forward trajectories were calculated from 1 January 2005 to 30 December 2016 using HYSPLIT to determine seasonal variation of potential transport pathways of SO2 emanating from KCS and identify the most affected areas around it. Then, the air parcels of each forward trajectory were divided into three height levels: 0–100 m above the ground level (agl.), 100–1000 m agl. 1000–5000 m agl. Finally, Kernel density analysis was conducted through a GIS tool to plot forward air parcels density maps. These show that the potential transport routes vary seasonally as well as the potential distances. Transport distance is approximately two times higher in winter than in summer, and it is equal for spring and autumn. The forward air parcels trajectory calculations have shown that there are two main corridors for transporting SO2 emanating from KCS towards to the northeast and south direction of this copper smelter. SO2 mainly transport through both corridors in spring and autumn and affect Rafsanjan and Sirjan cities and Bahram-e Goor Protected Area (PA). In summer, air parcels convey SO2 mainly in south direction and influence Bahram-e Goor PA and Darab city. The northeastern corridor is highly active in winter, and within this route, Rafsanjan City and Chah Koume PA are potentially affected. Shahr-e Babak is placed near the source and is highly affected in all seasons except winter. The wide spatial extent of SO2 transport besides KCS’ long-term production of SO2 imply the significant negative impact of this copper smelter on human health and the environment." @default.
- W2891365354 created "2018-09-27" @default.
- W2891365354 creator A5086539253 @default.
- W2891365354 creator A5089035664 @default.
- W2891365354 date "2019-01-01" @default.
- W2891365354 modified "2023-10-01" @default.
- W2891365354 title "Determination of the transport routes of and the areas potentially affected by SO2 emanating from Khatoonabad Copper Smelter (KCS), Kerman province, Iran using HYSPLIT" @default.
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- W2891365354 doi "https://doi.org/10.1016/j.apr.2018.08.008" @default.
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