Preparation of Sulfoaluminate Cement Using Industrial Waste Residue

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Abstract:

Large amount of emissions from industrial waste residue to the environment has caused serious pollutions. Utilization way to using industrial waste residue preparing sulfoaluminate cement (SAC) is got much attention of scholars both at home and abroad. It summarized the present researches for preparation of SAC from industrial waste residue (IWR). Sintering temperature, mineral composition, physical properties (fineness, standard viscosity, setting time), mechanical properties (compressive strength, flexural strength) and corrosion resistance of cement clinker were analyzed. Preparation of SAC clinker using IWR is a very promising environmental technology.

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Advanced Materials Research (Volumes 396-398)

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380-385

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November 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] National Bureau of Statistics of PRC. China statistical yearbook 2010. Beijing, China, 2010.

Google Scholar

[2] C.A. Luz, J.C. Rocha, M.Cheriaf, J.Pera: J. Construction and Building Materials, 2(2009)595-601.

DOI: 10.1016/j.conbuildmat.2008.04.004

Google Scholar

[3] Baojing Shen, Shaohang Feng, Hui Li, Shi Shi: J. Bulletin of the Chinese Ceramic Society, 2(2011)415-419.

Google Scholar

[4] Shap J H, Lawrence C D, Yang R: J. Advances in cement research, 11(1999)3-13.

Google Scholar

[5] F.P. Glasser: Advances in sulfoaluminate cements. Proceedings of the 5th International Symposium on Cement and Concrete (Volume 1) [C]; shanghai, Tongji University Press. 2002. 14-24.

Google Scholar

[6] J.Beretka, B.de Vito, L.Santoro, N. Sherman, G.L. Valenti: J. Resources, Conservation and Recycling, 3(1993)179-190.

DOI: 10.1016/0921-3449(93)90002-w

Google Scholar

[7] Alaoui A: New cements for sustainable development. ICCC, Montréal, Canada, 2007.

Google Scholar

[8] Q.G Feng: Preparation of Expansive and Self-stressing Sulfoaluminate Cement Using Bauxite Waste. Acta Scientiarum Naturalium Universitatis Sunyatseni, 46(2007)341-342.

Google Scholar

[9] Sadananda Sahu, Ján Majling: J. Cement and Concrete Research, 6(1994)1065-1072.

Google Scholar

[10] Peizhi Feng, Fatang Li, Suihua Guo: J. Cement Technology, 3(1999)41-42.

Google Scholar

[11] Fatang Li, Qingzhi Luo, Quntao Wang, Zhaowei Zhang: J. Fly Ash Comprehensive Utilization, 1(2005)25.

Google Scholar

[12] Xueping Gong, Xiaodong Shen, Huan Huan, Suhua Ma, Baixi Zhong: J. Fly Ash Comprehensive Utilization, 1(2006)31-33.

Google Scholar

[13] Fengli Cai: J. Cement, 6(2001)4-8.

Google Scholar

[14] Haiwen Zhang, Mingzhang Lan, zhifeng Chen, Zhenqiu Zhang: J. Cement Guide for New Epoch, 2(2002)25-28.

Google Scholar

[15] Hongwei Zhao, Jinhong Li, Hui Liu: J. Nonferrous Metals, 4(2006)119-123.

Google Scholar

[16] Tingshou Song, Lingchao Lu, Jiashan Hu: J. Cement, 4(1999)1-3.

Google Scholar

[17] Huimin Liu: J. Renewable Resources and Recycling Economy, 1(2008)42-44.

Google Scholar

[18] Ruihong Liu,Weidong Hua, Fatang Li: J. Fly Ash Comprehensive Utilization, 5(2008)19-20.

Google Scholar

[19] Wenjuan Chen, Haitao Li, Xuheng Cai, Yanhong Sheng, Aixin Chang: J. Bulletin of the Chinese Ceramic Society, 6(2009)1158-1162.

Google Scholar

[20] Yucai Wang, Jinhong Li, Haolin Wang: J. Environmental Science & Technology, 5(2010)129-132.

Google Scholar

[21] Huafang Li, Hongwei Zhao: J. China Science and Technology Information, 15(2008)34-35.

Google Scholar

[22] YongWang: J. Concrete, 8(2010)90-93.

Google Scholar