Development of Magnetic Separation System with Superconducting Magnet for Thermal Power Plants

Author:

OKADA Hidehiko1,HIROTA Noriyuki1,AKIYAMA Yoko2,MISHIMA Fumihito3,NISHIJIMA Shigehiro3,MATSUURA Hideki4,YAMAJI Tsuyoshi4,NAMBA Seitoku4,SEKINE Tomokazu5

Affiliation:

1. National Institute for Materials Science

2. Graduate School of Engineering, Osaka University

3. Department of Applied Nuclear Technology, Fukui University of Technology

4. Shikoku Research Institute Inc.

5. Ebara Industrial Cleaning Co. Ltd.

Publisher

Cryogenic Association of Japan

Reference11 articles.

1. 6) B.B. Emory: “Nuclear reactor application high gradient magnetic filtration,” IEEE Trans. Magn. 18 (1982) 1686-1688

2. 8) D.W. Ha, J.M. Kwon, S.K. Bail, Y.J. Lee, K.S. Han, R.K. Ko, M.H. Sohn and K.C. Seong: “Purification of condenser water in thermal power station by superconducting magnetic separation,”Physica C 471 (2011) 1530-1532.

3. 9) M. Siddhartha Bhatt: “Effect of water side deposits on the energy performance of coal fired thermal power plants,” Energy Conversion and Management 47 (2006) 1247-1263

4. 11) H. Okada, K. Imamura, N. Hirota, T. Ando, S. Shibatani, N. Mizuno, M. Nakahiro, F. Mishima , Y. Akiyama, S. Nishijima, H. Matsuura, T. Maeda and N. Shigemoto: “Development of a magnetic separation system of boiler feed water scale in thermal power plants,” IEEE Trans. Appl. Supercond. 26 (2016) 3701505

5. 13) H. Okada, K. Mitsuhashi, T. Ohara, E. Whitby and H. Wada: “Computational fluid dynamics simulation of high gradient magnetic separation,” Separation Science and Technology 40 (2005) 1567-1584

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