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2017 Vol.16, Issue 1 Preview Page
30 March 2017. pp. 31-39
Abstract
References
1
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.
2
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.
3
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.
4
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.
5
Irie, A. (2014), Particle size distribution of nanobubbles by Nanosight system, Micro- and Nanobubbles: Fundamentals and applications, Pan Stanford Publishing, pp.68-74.
6
Jang, J. W. (2012), A Study on Micronanobubble Washing Efficiency in Lead(Pb)-Contaminated Soil, Graduated Thesis, University of Seoul.
7
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.
8
Jeon, C. (2013), Review for Remediation Techniques of Contaminated Soil with Heavy Metals, Journal of KORRA, Vol.21, No.3, pp.21-31.
9
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.
10
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.
11
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.
12
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.
13
Ministry of Environment (2016), 2016 White Paper of Environment, Ministry of Environment.
14
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.
15
Takahashi, M. (2005), ζ Potential of Microbubbles in Aqueous Solutions: Electrical Properties of the Gas-Water Interface, J. Phys. Chem., 109, pp.21858-21864.
16
Ushikubo, F. Y., Furukawa, T., Nakagawa, R., Enari, M., Makino, Y., Kawagoe, Y., Shiina, T. and Oshita, S. (2010), Evidence of the existence and the stability of nano-bubbles in water, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol.361, pp.31-37.
17
Yang, J. W. and Lee, Y. J. (2007), Status of Soil Remediation and Technology Development in Korea, Korean Chemical Engineering Research, Vol.45, No.4, pp.311-318.
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