Abstract
References
Agarwal, A., Ng, W. J. and Liu, Y. (2011), Principle and applications of microbubble and nanobubble technology for water treatment, Chemosphere, Vol.84, Issue.9, pp.1175-1180. Cho, S. H., Kim, J. Y., Chun, J. H. and Kim, J. D. (2005), Ultrasonic formation of nanobubbles and their zeta-potentials in aqueous electrolyte and surfactant solutions, Colloids and Surfaces A: Physicochem. Eng. Aspects, Vol.269, pp.28-34. Choi, H. E. (2011), A Study on the Treatment of Heavy Metal and Oil Contaminated Soils with Micro-nano Bubbles Soil Washing System, Graduated Thesis, University of Dong-A. Hur, J. H. and Jeong, S. W. (2011), Effect of Water- Thoroughly-Rinsing in the Artificially Metal-Contaminated Soil Preparation on Final Soil Metal Concentrations, Journal of KSEE, Vol.33, No.9, pp.670-676. Irie, A. (2014), Particle size distribution of nanobubbles by Nanosight system, Micro- and Nanobubbles: Fundamentals and applications, Pan Stanford Publishing, pp.68-74. Jang, J. W. (2012), A Study on Micronanobubble Washing Efficiency in Lead(Pb)-Contaminated Soil, Graduated Thesis, University of Seoul. Jang, N. Y. (2010), A Study on the Treatment of Zn, Ni Contaminated Soils with Micro-nano Bubbles Acid Washing System, Graduated Thesis, University of Dong-A. Jeon, C. (2013), Review for Remediation Techniques of Contaminated Soil with Heavy Metals, Journal of KORRA, Vol.21, No.3, pp.21-31. Kim, Y. W., Lee, J. Y., Lee, Y. K. and Han, J. G. (2009), A Study on Heavy Metals sedimentation by pH, KSCE Conference, pp.2037-2040. Kikuchi, K., Ioka, A., Oku, T., Tanaka, Y., Saihara, Y. and Ogumi, Z. (2009), Concentration Determination of Oxygen Nanobubbles in Electrolyzed Water, Journal of Colloid and Interface Science, Vol.329, pp.306-309. Kukizaki, M. and Goto, M. (2006), Size Control of Nanobubbles Generated from Shirasu-porous-glass (SPG) Membranes, Journal of Membrane Science, Vol. 281, Issues 1-2, pp.386-396. Li, H., Hu, L. and Xia, Z. (2013), Impact of Groundwater Salinity on Bioremediation Enhanced by Micro-Nano Bubbles, Materials, Vol.6, pp.3676-3687. Ohgaki, K., Khanh, N. Q., Joden, Y., Tsuji, A. and Nakagawa, T. (2010), Physicochemical approach to nanobubble solutions, Chemical Engineering Science, Vol.65, pp.1296-1300. Takahashi, M. (2005), ζ Potential of Microbubbles in Aqueous Solutions: Electrical Properties of the Gas-Water Interface, J. Phys. Chem., 109, pp.21858-21864.
Information
- Publisher :Korean Geosythetics Society
- Publisher(Ko) :한국지반신소재학회
- Journal Title :Journal of the Korean Geosynthetics Society
- Journal Title(Ko) :한국지반신소재학회 논문집
- Volume : 16
- No :1
- Pages :31-39
- Received Date : 2016-12-21
- Revised Date : 2017-02-23
- Accepted Date : 2017-03-06
- DOI :https://doi.org/10.12814/jkgss.2017.16.1.031


Journal of the Korean Geosynthetics Society







