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1 S. Sailo, L. Pachuau, J. K. Yang, S. M. Lee,and D. Tiwari, 2015, "Efficient Use of ferrate(VI) for the Remediation of Wastewater Contaminated with Metal Complexes", Environ. Eng. Res., Vol. 20, No. 1, pp. 89-97./   DOI View Article
2 Jung J, Kim Y, Park Y, Lee S, Kim D. Optimization of coagulation conditions for pretreatment of microfiltration process using response surface methodology. Environ. Eng. Res. 2015;20:223-229./   DOI View Article
3 Lee DG. Removal of a synthetic broad-spectrum antimicrobial agent, triclosan, in wastewater treatment systems: A short review. Environ. Eng. Res. 2015;20:111-120./   DOI View Article
4 Lee C. Oxidation of organic contaminants in water by ironinduced oxygen activation: A short review. Environ. Eng. Res. 2015;20:205-211./   DOI View Article
5 Choi, T., Lee, S., Kim, D., Kim, M. and Koo, J. (2014), Application of management reliability index for water distribution system assessment, Environmental Engineering Research, 19 (2), 117-122./   DOI View Article
6 Tiwari, S., Sarangi, B.K., Pandey, R.A. (2014) Efficacy of three different plant species for arsenic phytoextraction from hydroponic system, Environmental Engineering Research, 19(2), pp. 145-149./   DOI View Article
7 Shin, W. S., Kang, K., and Kim, Y. G. (2014). Adsorption Characteristics of Multi-metal Ions by Red Mud, Zeolite, Limestone and Oyster Shell, Enviornmental Engineering Research, 19(1), pp. 15-22./   DOI View Article
8 Kown SH, Cho D, Jiang S. Chemical and biological analysis of bay sediment where magnesium oxide compounds are applied. Environ. Eng. Res. 2014;19:101-105./   DOI View Article
9 Lee BJ, Molz F. Numerical simulation of turbulence-induced flocculation and sedimentation in a flocculant-aided sediment retention pond. Env. Eng. Re.s 2014;19:165-174./   DOI View Article
10 Tiwari D, Laldawngliana C, Lee SM. Immobilized small sized manganese dioxide sand in the remediation of arsenic contaminated water. Environ. Eng. Res. 2014;19:107-113./   DOI View Article
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