Research on Atmospheric Environmental Capacity Model of Urban Agglomeration

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Abstract:

The urban agglomeration is the area with industrial centralization, dense population and vehicles collecting, which is the heavily air polluted place but also the place with demand of hi-quality atmosphere. The only condition to assure the city clusters in sustainable development is that the economy and the environment shall be advanced in coordination, i.e. the economy shall be kept fast developing while the air quality shall satisfy the citizen’s healthy existence and the biologic balance. The basic measure to realize such condition is to control the total amount of pollutants discharged not exceed the atmospheric environmental capacity(AEC) ,in short, implementing the capacity total quantity control(CTQC).so calculate the value of atmospheric environmental capacity is very important. On account that this thesis has considered comprehensively the relations among ambient air quality to come up to national ambient air quality standard(NAAQS), the investment for controlling the pollution and the loss by contamination hazard, an optimized atmospheric environmental capacity model is established with the bi-objective functions of least investment for controlling the pollution and loss by contamination hazard as well as the restricting condition is atmospheric environmental quality meet the NAAQS. Taking the northern urban agglomeration in Leshan City as an example we have calculated the actual SO2 atmospheric environmental capacity and provided an instance for the model’s promotion of application.

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Periodical:

Advanced Materials Research (Volumes 518-523)

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1311-1320

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May 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] China Association for Science and Technology for Environment Science: Development Report from Society(China Science and Technology Press, Beijing 2009,pp.79-91,pp.138-147)(In chinese).

Google Scholar

[2] China Environment Science Institute, AEC Model Research (Environment Science Institute, Beijing, China 2006, pp.1-3)(In chinese).

Google Scholar

[3] Jinnan Wang and Xiangzhong Pan: Environment Science, Vol. 26, No.6(2005)(In chinese).

Google Scholar

[4] Chemistry Department of National Natural Science Foundation: Front and View for Environment Chemistry ( Science Press, Beijing 2011,pp.115-128)(In chinese).

Google Scholar

[5] Fusheng Wei and R.S.chapman: Air Pollution to Respiratory Health(China Environment Science Press, Beijing 2001,pp.86-90)(In chinese).

Google Scholar

[6] Xiaomin Fei, Fang Yu and Yue Zhao: Assess Theory and Method for Environment Pollution(China Environment Science Press, Beijing 2009,pp.92-95,146-148)(In chinese).

Google Scholar

[7] George M.Hidy, Jeffrey R.Brook, Kenneth L.Demerjian, et al: Technical Challenges of Multipollutant Air Quality Mangement. (Springer Dordrecht Heidelberg London New York, New York 2011,pp.67-229).

DOI: 10.1007/978-94-007-0304-9_12

Google Scholar

[8] Kan H. Environment and health in china: Environ Health Persp, 117(12) (2009),p.A530-531.

Google Scholar

[9] Dockery D W,Pope C A, Xu X: N.Engl.J.Med. (1993), 329:pp.1753-1759.

Google Scholar

[10] Pope C A,Thun M U,Nambodim M M: Am.J.Resp.Crit.Care. 151:pp.669-674, (1995).

Google Scholar

[11] Wong C M, Vichit-Vadakan N, Kan H D, et al: Environ.Health Perspect,116:pp.1195-1202(2008).

Google Scholar

[12] Aunan K. and Pan XC: Science of the Total Environment, 329: pp.3-16 , (2004).

Google Scholar

[13] Singh B, Agrawal M : Water, Air & Soil pollution, 152(1-4):pp.71-80, (2004).

Google Scholar

[14] Ulrich B, Pankrath J. Effects of accumulation air pollutants in forest ecosystems.( D.Reidl Publishing Compang, 1983,pp.331-342).

Google Scholar

[15] William C. Skamarock, Joseph B.klemp, Jimy Dudhia :A Description of the Advanced Research WRF (Version 3) (National Center for Atmospheric Research, June 2008).

Google Scholar

[16] Scire JS, Strimaitis DG, Yamartino BJ. A User's Guide for the CALPUFF Dispersion Model (Version 5)(Earth Tech Inc. 2000).

Google Scholar

[17] Mingsheng Yang and changtong Luo: Optimized Principles, Methodology and Solving Software( Science Press, Beijing 2006, 9,pp.56-58)(In chinese).

Google Scholar

[18] Yunsheng Li, Qing Gu and Yinchang Feng :Technical Guidance for AEC Volume Control in Cities (China Environment Science Press, Beijing 2005)(In chinese).

Google Scholar

[19] Wenyong Wang and Nan Chen:Academic Journal in Southwest Jiaotong University, Vol.45. No.6(2010) (In chinese).

Google Scholar

[20] Jincai Xu, Qin Liu and Ming Chen: Leshan Annual Statistics – 2009 (Leshan Statistics Association, Leshan2009, p.36,63,190-191,288). (In chinese).

Google Scholar