Study of Process Industries Strategic Environmental Assessment Matrix Model Methodology Based on the Decision-Making Integrated

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Abstract:

Process industries strategic environmental assessment (PISEA) involves some industry, is an extremely complicated system, it is difficult or impossible to been full studied by a single approach, and must rely on a comprehensive, sound methodology. Base on the traditional method of environmental impact assessment, policy science assessment and system integration, combining with practical industry background, presenting an decision-making integration methodology. On this basis, constructing methodology of PISEA matrix model based on the integration of Decision-making. The study results show that the matrix methodology will integrate the processes of PISEA and strategy development, reflecting the guidance of PISEA methodology supporting decision-making.

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Periodical:

Advanced Materials Research (Volumes 383-390)

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6443-6448

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November 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] H. W. Qian, B.C. Xia. Considerations of emergency management three-stage model for risk assessment to forecast sectors of PISEA, International Symposium on Emergency Management, Beijing , pp.567-569, December (2009).

Google Scholar

[2] J.C. Shang, C.K. Bao. Strategic environmental assessment, Beijing: science press, 2003, pp.26-28.

Google Scholar

[3] D.C. Sun, F.Y. Lin. System engineering, Beijing: tsinghua university press, 2004, pp.114-115.

Google Scholar

[4] B. D. Clayton, B. Sadler. Strategic environmental assessment: the international practice and experience, Beijing: chemical industry press, 2007, p.7.

Google Scholar

[5] R. Therivel. Strategic environmental assessment practice, Beijing: chemical industry press, 2005, pp.50-53.

Google Scholar

[6] National natural science fund committee. Preparation of engineering materials, metallurgy and scientific, Beijing: science press, 2006, pp.273-374.

Google Scholar

[7] National natural science fund committee. Metallurgy and mining science, Beijing: science press, 1997, pp.18-22.

Google Scholar

[8] N.S. Hu. Modern public policy: public policy of overall perspective, Beijing: CCTP, 2007, pp.257-258.

Google Scholar

[9] T. Sterr,T. Ott. The Industrial region as a promising unit for eco-industrial development: reflections, practical experience and establishment of innovative instruments to support industrial ecology, Journal of Cleaner Production, China, vol. 12, pp.947-965, December (2004).

DOI: 10.1016/j.jclepro.2004.02.029

Google Scholar

[10] B. M. Trost. The atom economy: a search for synthetic efficiency, Science, America, vol. 254, p.1471, 5037 (1991).

DOI: 10.1126/science.1962206

Google Scholar

[11] Y.D. Peng. Regional development environmental impact Assessment, Beijing: China Environmental Science Press, 1999, pp.13-17.

Google Scholar