Volume 18 Issue 4
Aug.  2005
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JIAN-PING WANG, XI-KUN GUO. Study on the Total Amount Control of Atmospheric Pollutant Based on GIS[J]. Biomedical and Environmental Sciences, 2005, 18(4): 233-237.
Citation: JIAN-PING WANG, XI-KUN GUO. Study on the Total Amount Control of Atmospheric Pollutant Based on GIS[J]. Biomedical and Environmental Sciences, 2005, 18(4): 233-237.

Study on the Total Amount Control of Atmospheric Pollutant Based on GIS

  • Objective To provide effective environmental management for total amount control of atmospheric pollutants. Methods An atmospheric diffusion model of sulfur dioxide on the surface of the earth was established and tested in Shantou of Guangdong Province on the basis of an overall assessment of regional natural environment, social economic state of development, pollution sources and atmospheric environmental quality. Compared with actual monitoring results in a studied region, simulation values fell within the range of two times of error and were evenly distributed in the two sides of the monitored values. Predicted with the largest emission model method, the largest emission of sulfur dioxide would be 54 279.792 tons per year in 2010. Conclusion The mathematical model established and revised on the basis of GIS is more rational and suitable for the regional characteristics of total amount control of air pollutants.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Study on the Total Amount Control of Atmospheric Pollutant Based on GIS

Abstract: Objective To provide effective environmental management for total amount control of atmospheric pollutants. Methods An atmospheric diffusion model of sulfur dioxide on the surface of the earth was established and tested in Shantou of Guangdong Province on the basis of an overall assessment of regional natural environment, social economic state of development, pollution sources and atmospheric environmental quality. Compared with actual monitoring results in a studied region, simulation values fell within the range of two times of error and were evenly distributed in the two sides of the monitored values. Predicted with the largest emission model method, the largest emission of sulfur dioxide would be 54 279.792 tons per year in 2010. Conclusion The mathematical model established and revised on the basis of GIS is more rational and suitable for the regional characteristics of total amount control of air pollutants.

JIAN-PING WANG, XI-KUN GUO. Study on the Total Amount Control of Atmospheric Pollutant Based on GIS[J]. Biomedical and Environmental Sciences, 2005, 18(4): 233-237.
Citation: JIAN-PING WANG, XI-KUN GUO. Study on the Total Amount Control of Atmospheric Pollutant Based on GIS[J]. Biomedical and Environmental Sciences, 2005, 18(4): 233-237.

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