Diatomite Modification and its Application in Wastewater Treatment

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Abstract:

Diatomite is a kind of non-metallic mineral with many pores, small density, large specific surface area, good adsorptive property, acid resistance, alkali resistance, and insulation. As a new kind of coagulant material, diatomite has characteristics of wide range of resource, good sewage treatment effect, and simple equipment for later sludge treatment, so its application prospect is broad. This paper introduced the basic conception and properties, and adsorption mechanism of diatomite, summarized the modification method of diatomite, its research and application status of water treatment, as well as its future development trends.

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Periodical:

Advanced Materials Research (Volumes 850-851)

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1355-1359

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December 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zhang Fengjun. Diatomite processing and application[M]. Chemical Industry Press, Beijing, 2005. 9(in Chinese).

Google Scholar

[2] Yu Gan, Bao Ya-fang. China Mining Magazine, 11(2), 2003: 33-36(in Chinese).

Google Scholar

[3] Liu keke, Cheng Shenggao. The 12th annual seminar of China mineral rock geochemical society proceedings, 2009, 28: 298(in Chinese).

Google Scholar

[4] Luo Zhiwen, Chen Lin, Mo Xiaoping. Neijiang technology, (9), 2008: 110-123(in Chinese).

Google Scholar

[5] Wang Hongli, Dong Jinfang, Du Gaoxiang. China Non-Metallic Mining Industry Herald, (6), 2007: 9~13(in Chinese).

Google Scholar

[6] Yang Wen, Wang Ping, Zhu Jian, Zhang Ye. Non-Metallic Mines, 34(2), 2011: 54~58(in Chinese).

Google Scholar

[7] Guo Xiaojun, Li Jing, Zhang Li, et al. Technology of water treatment, 38(11), 2012: 30~34(in Chinese).

Google Scholar

[8] Cao Ya-li. Journal of Qingdao University of Science and Technology(Natural Science Edition), 27(6), 2006: 486~492(in Chinese).

Google Scholar

[9] Zhu Jian, Wang Ping, Luo Wen-lian, et al. Bulletin of the Chinese Ceramic Society, 29(6), 2010:1291 ~ 1299(in Chinese).

Google Scholar

[10] Luo Daocheng, Liu Junfeng. China Mining Magazine, 14(7),2005: 69~71(in Chinese).

Google Scholar

[11] Gao Baojiao, Jiang Pengfei, An Fuqiang, et al. Acta Polymerica Sinica, (1),2006: 70-75(in Chinese).

Google Scholar

[12] Dang Wei, Song Xincheng, Shi Ling, et al. Chinese Journal of Colloid & Polymer, 27 (4), 2009: 25-27(in Chinese).

Google Scholar

[13] He Minghe, Wu Chunde, Jin Wei, et al. Industrial Water Treatment, 25(5), 2005: 25-27(in Chinese).

Google Scholar

[14] Li Zengxin, Wang Guoming, Meng Yun, et al. Experimental Technology and Management, 26 (8), 2009: 23-26(in Chinese).

Google Scholar

[15] Tang Hongyan, Zhou Ming, Zhou Guoying, et al. Technology of Water Treatment, 39 (3), 2013: 13-15(in Chinese).

Google Scholar