Research on the Treatment of Oily Sludge

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Abstract:

The oily sludge was more serious polluted to the environment, it is necessary to harmless treatment. Analysised the composition of the oily sludge. Three ways to deal with oily sludge included chemical treatment, biological degradation and resource utilization. Elaborated the application of three ways, dicussed the pros and cons, thought waste utilization was the most effective way.

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Advanced Materials Research (Volumes 671-674)

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2746-2749

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March 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Xu Ning, Wang Wenxiang, Han Pingfang: Journal of Hazardous Materials Vol. 171(2009), p.914–917.

Google Scholar

[2] Marks, R.E., Field, S.D., Wojtanowicz, A.K., Britenbeck, G. A: Water Sci. Technol Vol. 1992 (25) , p.213–220.

Google Scholar

[3] Ju Zhang, Jianbing Li, Ronald W. Thring: Journal of Hazardous Materials Vol. 203–204 (2012), p.195–203.

Google Scholar

[4] Bao-chen Cui, Shu-zhi Liu, Fu-yi Cui: Process Safety and Environmental Protection Vol. 89 (2011) , p.198–203.

Google Scholar

[5] Baochen Cui, Fuyi Cui, Guolin Jing: Journal of Hazardous Materials Vol. 165 (2009), p.511–517.

Google Scholar

[6] D. S. JEAN, D. J. LEE, J. C. S. WU: Water Research Vol. 33(1999) , pp.1756-1759.

Google Scholar

[7] Basanta Kumar Biswal, Satyendra Nath Tiwari, Suparna Mukherji: Bioresource Technology Vol. 100 (2009) , p.1700–1703.

Google Scholar

[8] Shuchi Verm, Renu Bhargav, Vikas Pruthi: International Biodeterioration & Biodegradation Vol. 57 (2006) , p.207–213.

Google Scholar

[9] Wuxing Liu, Yongming Luoa, Ying Teng: Journal of Hazardous Materials Vol. 161 (2009) , p.479–484.

Google Scholar

[10] I. Lazar, S. Dobrota, A. Voicu, M. Stefanescu: Journal of Petroleum Science and Engineering Vol. 22 (1999) , p.151–160.

Google Scholar

[11] C. Machı ´n-Ramı ´rez, A.I. Okoh, D. Morales: Chemosphere Vol. 70 (2008) , p.737–744.

Google Scholar

[12] Ping Yan, Mang Lu, Qin Yang: Bioresource Technology Vol. 116 (2012) , p.24–28.

Google Scholar

[13] Ragheb A. Tahhan, Rouba Youssef Abu-Ateih: International Biodeterioration & Biodegradation Vol. 63 (2009) , p.1054–1060.

DOI: 10.1016/j.ibiod.2009.09.001

Google Scholar

[14] Vanessa S. Cerqueira, Emanuel B. Hollenbach, Franciele Maboni: Bioresource Technology Vol. 102 (2011) , p.11003–11010.

Google Scholar

[15] Mait Kriipsalu, Marcia Marques, Diauddin R. Nammari: Journal of Hazardous Materials Vol. 148(2007) , p.616– 622.

Google Scholar

[16] Nurdan Buyukkamaci, Emrah Kucukselek: Journal of Hazardous Materials Vol. 144 (2007) , p.323–327.

Google Scholar

[17] Lin Yang, George Nakhla, Amarjeet Bassi: Journal of Hazardous Materials Vol. 125 (2005) , p.130–140.

Google Scholar

[18] S.N. Monteiro, C.M.F. Vieira, M.M. Ribeiro: Construction and Building Materials Vol. 21 (2007) , p.2007–(2011).

Google Scholar

[19] B.C.A. Pinheiro, J.N.F. Holanda: Ceramics International Vol. 39 (2013) , p.57–63.

Google Scholar

[20] Patricia Fernanda Andrade, Thiago Figueiredo Azevedo, Iara F. Gimenez: Journal of Hazardous Materials Vol. 167 (2009) , p.879– 884.

Google Scholar

[21] Essam A.H. Zubaidy, Dana M. Abouelnasr: Process Safety and Environmental Protection Vol. 88(2010) , p.318–326.

Google Scholar

[22] Lingsheng Zhou, Xiumin Jiang, Jianguo Liu: Journal of Hazardous Materials Vol. 170 (2009) , p.175–179.

Google Scholar