Research Progress on Preparation Technology of Calcium Sulfate

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Abstract:

Calcium sulfate is an important inorganic chemical products which is widely used in construction, pharmaceutical and food industries. Especially, calcium sulfate whisker with fibrous structure developed in recent years is further used in rubber, coating, plastic, adhesives, textile, papermaking, and many other industries due to its superior performance and characteristics of environmental protection and nontoxic.The paper reviewed the preparation technology of calcium sulfate according to the different raw materials, especially for industrial waste (by-product).

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Advanced Materials Research (Volumes 881-883)

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998-1002

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January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] F. Y. Li, W.C. Zhu, L. Xu, Journal of Anhui University of Technology(Natural Science), 2012, 29(22): 335-337.

Google Scholar

[2] K. B. Luo, H. P. Li, L. Xiang and so on, China Nonferrous Metallurgy, 2010, (1): 57-60.

Google Scholar

[3] D. R. Gareth, E. C. Richard, J. H. Stephen et a1, Langmuir, 1999, 15(6): 1993-(2002).

Google Scholar

[4] D. B. Kuang, A. W. Xu, Y. P. Fang et a1, Journal of Crystal Growth, 2002, 244(3/4): 379-383.

Google Scholar

[5] X. Q. Li, Q. Chen, L. E. Zhang and so on, 2007, 24(8): 945-948.

Google Scholar

[6] X. Y. Song, S. X. Sun, W. F. Fan, Journal of Materials Chemistry, 2003, 13: 1817-1821.

Google Scholar

[7] Y. Wang, Z. Li, Y. S. Li, Journal of Dalian Jiaotong University, 2010, 31(2): 51-55.

Google Scholar

[8] Y. X. Han, Conservation and Utilization of Mineral Resources, 1998, 1(2): 10-13.

Google Scholar

[9] Y. S. Cui, Y. Liu, L. J. Fu and so on, Journal of Sichuan University of Science & Engineering (Natural Science Edition), 2012, (25): 38-40.

Google Scholar

[10] R. H. Yang, X. Y. Wu, X. N. Feng, Inorganic Chemicals Industry, 2010, (42): 44-47.

Google Scholar

[11] Z. Y. Deng, Y. Y. Yuan, J. Sun etc, Coal Ash, 2009, (3): 27-30.

Google Scholar

[12] X. H. Feng, W. D. Liang, J. Guan and so on, Applied Chemical Industry, 2007, 36(2): 134-139.

Google Scholar

[13] J. Qin, Z. J. Xie, J. Yu and so on, Inorganic Chemicals Industry, 2010, 10(42): 50-53.

Google Scholar

[14] N. Hu, China Well and Rock Salt, 2006, 37(3): 3-9.

Google Scholar

[15] H. Zhang, J. Dong, M. J. Ma, Environmental Protection of Chemical Industry, 1988, 8(2): 91-93.

Google Scholar

[16] Y. S. Cui, Y. Liu, L. Zhan and so on, Journal of Sichuan University of Science & Engineering: Natural Science Editton, 2012, 25(5): 19-21.

Google Scholar

[17] C. M. Xiao, Y. Q. Zhang, H. H. Zhang, Hunan Metallurgy, 1998, (4): 7-9.

Google Scholar

[18] Y. L. Ma, Y. Su, X. Y. Kang et al, Chemical Engineering (China), 2011, 39(3): 99-102.

Google Scholar

[19] G. B. Li, Y. L. Ma, X. Y. Kang et al, Materials Review: nano and new material album, 2011, 25: 118-120.

Google Scholar

[20] B. C. Liu, Coal Ash, 2012, 3(30): 30-34.

Google Scholar

[21] J. Li, J. Gao, S. E. Wang et al, Inner Mongolia Petrochemical Industry, 2007, (5): 1-3.

Google Scholar

[22] G. Lv, J. W. Li, Y. S. Qiu et al, Non-metallic Mines, 2008, 31(6): 19-21.

Google Scholar

[23] W. H. Wang, L. Huang, X. F. Gu, Journal of Qiqihar Teachers College (Natural Science), 1996, 16(2): 45-47.

Google Scholar