Preparation and Research Advance of Electronic Grade Phosphoric Acid

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Abstract:

The application of high purity phosphoric acid in industrial production is more and more widely used, especially electronic grade phosphoric acid, and the demand of it has risen year by year. This paper introduces the preparation and research advance of electronic grade phosphoric acid, expounds the principle, advantages and disadvantages and research advance of preparing high purity phosphoric acid by high purity phosphorus oxidation method and phosphoric acid purification method. Using hot process by direct method to prepare high purity electronic grade phosphoric acid is still the mainstream on the current, and the key of technique is the purification of yellow phosphorus and phosphoric acid.

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Advanced Materials Research (Volumes 881-883)

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70-73

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January 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Luo. Jilin: Journal of Phosphate Fertilizer and Compound Fertilizer (2007).

Google Scholar

[2] Liu. Fei, Li. Tianxiang: Journal of Inorganic Salt Industry (2011).

Google Scholar

[3] Chen. Sizhong: Journal of Comprehensive Utilization of China Resource (2011).

Google Scholar

[4] Palm. Gordon F, Hartig. George. R, U.S. Patent 0531b748A. (1994).

Google Scholar

[5] Lin. Jun, Wu. Xiaohai and Hong. Chunmei, etc: Journal of Chemical Technology and Development (2012).

Google Scholar

[6] Wu. Zhanping, CHN Patent, CN1724341. (2006).

Google Scholar

[7] Ouyang. Yide, Tang. Zhengjiao and Wang. Cunwen, etc: Journal of modern chemical industry (2009).

Google Scholar

[8] Zhao. Tingren, Chen. Debin: Journal of Central China Normal University (natural science edition), (1993).

Google Scholar

[9] Zhang. Linfeng, Xiong. Xiangzu and Wei shiyuan, etc: Journal of Phosphate Fertilizer and Compound Fertilizers (2009).

Google Scholar

[10] Lian. Peichao, Meng. Wenjie and Thang. Deyuan: Journal of Guizhou University of Technology (natural science edition) (2008).

Google Scholar

[11] Jiang. Lihong, Zhao. Shenglan: Journal of Yunnan Chemical industry (2000).

Google Scholar

[12] Liu. Dehui: Journal of Shenyang University of Chemical Engineering (1990).

Google Scholar

[13] Luo. Jilin, li. Jun and Yang. Sanke, etc: Journal of Phosphate Fertilizer and Compound Fertilizers (2009).

Google Scholar

[14] Zhao. Tingren, Liu. Jianqing and Yin. Qiguang: Journal of Chemical engineering progress (1992).

Google Scholar

[15] Milligan C H, U.S. Patent 1929443. (1933).

Google Scholar

[16] Van, U.S. Patent 1968544. (1934).

Google Scholar

[17] Helfericl:, et al: Chem Ber, 1952, 85: 461.

Google Scholar

[18] Zhong. Benhe, li. Jun and Gong, Haiyan: Journal of chemical mineral and processing (2007).

Google Scholar

[19] Xiao. LiHua, Cooling crystallization study on prepare electronic grade phosphoric acid. Kunming: Univ. of Science and Technology, (2008).

Google Scholar

[20] Li. Tianxiang, Xie. Tian and Liu. Fei, etc. CHN Patent CN1850590. (2006).

Google Scholar

[21] Hanson D N, Lynn S, U.S. Patent 4879042. (1989).

Google Scholar

[22] Bulau H C: Chem tech, 1997, 64(9): 842.

Google Scholar

[23] Wicwiorowski T K, U.S. Patent 4655790. (1987).

Google Scholar

[24] Tavare N S, Garside J: Ind Eng Chem Process Des Dcv, 1980, 19: 653-665.

Google Scholar

[25] Zhu. Jian, CHN Patent CN1873900. (2006).

Google Scholar

[26] Dai. Shiqing: Journal of Inorganic Salt Industry (1986).

Google Scholar