The Structure and its Applications of the Subsurface Wastewater Infiltration System

Article Preview

Abstract:

Subsurface wastewater infiltration system (SWIS) is considered to be an efficient and economic ecological process for decentralized domestic wastewater treatment. The process structure determines the performance and removal efficiency of the pollutants. This paper introduces several kinds of commonly used structure and their applications, and it proposes that it is essential to make the structure type diversified and broaden the application space of the SWIS.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 1073-1076)

Pages:

712-715

Citation:

Online since:

December 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] M. Pell and F. Nyberg: Environ. Qual. Vol. 8 (1989), p.457.

Google Scholar

[2] A. Kadam, G. Oza, P. Nemade and S. Dutta: Chemosphere. Vol. 71 (2008), p.975.

Google Scholar

[3] USEPA: Onsite Wastewater Treatment Systems Manual (U.S. EPA, Washington, 2002).

Google Scholar

[4] J. Zhang, X. Huang, C.X. Liu, H.C. Shi and H.Y. Hu: Ecol. Eng. Vol. 25 (2005), p.419.

Google Scholar

[5] X. Wang, T. h. Sun and H.B. Li: Ecol. Eng. Vol. 36 (2010), p.1433.

Google Scholar

[6] X.Y. Zheng, Y. Li, and C. Wang: China Water & Wastewater. Vol. 22 (2006), p.11.

Google Scholar

[7] G. Kong, Z.Y. Xu, Y. Wang and et al: Environ. Sci. Technol. Vol. 29 (2006), p.7.

Google Scholar

[8] X.X. Wang: Study on Treatment of Rural Domestic Wastewater by Modified Infiltration System. (Nanjing University 2011).

Google Scholar

[9] NSFC: Pipeline. Vol. 12 (2001), p.1.

Google Scholar

[10] Z.H. Dang, C.D. Wang and Y.H. Yang: J. Environ. Eng. Vol. 6 (2012), p.922.

Google Scholar

[11] S.T. Cai, C.D. Wang and Q.Y. Xu: Environ. Sci. Technol. Vol. 34 (2011), p.98.

Google Scholar

[12] Z.S. Wang: Studies on nitrogen removal of gravel-less perforated pipe leach fields system (Southwest University 2010).

Google Scholar

[13] Y.H. Li, H.B. Li, T.H. Sun and X. Wang: J. Hazard. Mater. Vol. 189 (2011), p.336.

Google Scholar

[14] X. Wang, T.H. Sun, H.B. Li and Y.H. Li: Ecol. Eng. Vol. 36 (2010), p.1433.

Google Scholar

[15] T. Wakatsuki, A.S. Omur, Y. Abe: Soil Sci. Plant Nutr. Vol. 61 (1999), p.74.

Google Scholar

[16] Y. Hai, L. Sen, J. Zang and et al: Environ. Sci. Technol. Vol. 24 (2011), p.1.

Google Scholar

[17] C.J. Wei, Q. Zhuand W.Z. Wu: China Environ. Sci. Vol. 29 (2009), p.833.

Google Scholar

[18] J. Zang, C.F. Shao and Z.Q. Liu: China Water & Wastewater. Vol. 20 (2004), p.1.

Google Scholar

[19] Z. Wang C.X. Liu and J. Dong: Acta Scientiae Circumstantiae. Vol. 33 (2013), p. (1926).

Google Scholar

[20] Q. Yan, Y.F. Wu and J. Yang: Journal of Tongji University. Vol. 38 (2010), p.697.

Google Scholar

[21] Z.D. Huang, J. Zhang and J. Yang: Sichuan Environ. Vol. 30 (2011), p.16.

Google Scholar

[22] S, Biswas and P. Bose: J. Environ. Eng. Vol. 131 (2005), p.212.

Google Scholar

[23] S. Luanmanee, P. Boonsook and T. Attanandana: Soil Sci. Plant Nutr. Vol. 48 (2002), p.125.

Google Scholar

[24] S.C. Wang: Study on garden water treatment with subsurface infiltration system. (Suzhou University 2007).

Google Scholar

[25] Y.H. Chen, Z.M. Yang and J. He: Environ. Sci. China. Vol. 32(2011), p.1066.

Google Scholar

[26] Y.F. Peng and X.H. Ping: Journal of Railway Engineering Society. Vol. (2007), p.47.

Google Scholar

[27] J. L. Chen, W.G. Wu, C.P. Yang and et al: Acta Scientiae Circumstantiae. Vol. 32 (2012), p.909.

Google Scholar

[28] C.J. Wei, W.Z. Wu and S. Tao: China Water & Wastewater. Vol. 26(2010), p.104.

Google Scholar