1 전기설, "흡수성 바이오필터 시스템의 오수처리 특성 및 효율" 한국농공학회 46 (46): 131-139, 2004
2 이상호, "입상 전로슬래그의 입도 차이에 따른 인공폐수의 인산염 제거에 관한 연구" 한국산학기술학회 8 (8): 136-142, 2007
3 임병란, "양돈폐수의 영양염류 제거를 위한 녹조류 Chlorella vulgaris 성장 모형의 비교" 한국농공학회 52 (52): 19-26, 2010
4 김이태, "알루미늄 제련 폐기물(Red Mud)의 활성화 방법에 따른 수용상의 인산염 제거특성" 한국물환경학회 20 (20): 466-472, 2004
5 민지은, "반응매질로서의 영가철 및 블랙셰일에 용존무기 인산염 흡착" 대한환경공학회 30 (30): 907-912, 2008
6 박성직, "고온 처리된 활성알루미나를 이용한 불소 제거" 대한환경공학회 32 (32): 986-993, 2010
7 Wijnja, H, "Vibrational spectroscopy study of selenate and sulfate adsorption mechanisms on Fe and Al (hydr)oxide surfaces" 229 : 286-287, 2000
8 Hiemstra, T., "Surface complexation of carbonate on goethite: IR spectroscopy, structure and charge distribution" 278 (278): 282-290, 2004
9 Tanada, S., "Removal of phosphate by aluminum oxide hydroxide" 257 : 135-140, 2003
10 Xu, Y. H., "Removal of arsenate, phosphate, and fluoride ions by aluminumloaded Shirasu-zeolite" 76 : 111-124, 2000
1 전기설, "흡수성 바이오필터 시스템의 오수처리 특성 및 효율" 한국농공학회 46 (46): 131-139, 2004
2 이상호, "입상 전로슬래그의 입도 차이에 따른 인공폐수의 인산염 제거에 관한 연구" 한국산학기술학회 8 (8): 136-142, 2007
3 임병란, "양돈폐수의 영양염류 제거를 위한 녹조류 Chlorella vulgaris 성장 모형의 비교" 한국농공학회 52 (52): 19-26, 2010
4 김이태, "알루미늄 제련 폐기물(Red Mud)의 활성화 방법에 따른 수용상의 인산염 제거특성" 한국물환경학회 20 (20): 466-472, 2004
5 민지은, "반응매질로서의 영가철 및 블랙셰일에 용존무기 인산염 흡착" 대한환경공학회 30 (30): 907-912, 2008
6 박성직, "고온 처리된 활성알루미나를 이용한 불소 제거" 대한환경공학회 32 (32): 986-993, 2010
7 Wijnja, H, "Vibrational spectroscopy study of selenate and sulfate adsorption mechanisms on Fe and Al (hydr)oxide surfaces" 229 : 286-287, 2000
8 Hiemstra, T., "Surface complexation of carbonate on goethite: IR spectroscopy, structure and charge distribution" 278 (278): 282-290, 2004
9 Tanada, S., "Removal of phosphate by aluminum oxide hydroxide" 257 : 135-140, 2003
10 Xu, Y. H., "Removal of arsenate, phosphate, and fluoride ions by aluminumloaded Shirasu-zeolite" 76 : 111-124, 2000
11 Huang, W., "Phosphate removal from wastewater using red mud" 158 : 35-42, 2008
12 Li, Y., "Phosphate removal from aqueous solutions using raw and activated red mud and fly ash" B137 : 374-383, 2006
13 Sakadevan, T., "Phosphate adsorption characteristics of soils, slags, and zeolite to be used as substrates in constructed wetland systems" 32 (32): 393-399, 1998
14 한용운, "Phosphate Removal from Aqueous Solution by Aluminum (Hydr)oxide-coated Sand" 대한환경공학회 14 (14): 164-169, 2009
15 Ministry of Environment, "Manual for Water Quality Testing, Gwacheon(in Korean)"
16 Park, S. J., "Influence of (bi) carbonate on bacterial interaction with quartz and metal oxide-coated surface" 76 : 57-62, 2010
17 Tang, Y., "Fluoride adsorption onto activated alumina: Modeling the effects of pH and some competing ions" 337 : 33-38, 2009
18 Kim, J. G, "Evaluation to purification capacity of pollutants by column test with the tidal flat sediment" 9 (9): 223-228, 2000
19 Billen, G., "Estimates of early-industrial inputs of nutrients to river systems: implication for coastal eutrophication" 243-244 : 43-52, 1999
20 오광중, "EAF Slag의 해양복토제 활용을 위한 PO4--P 제거특성에 관한 연구" 한국청정기술학회 16 (16): 258-264, 2010
21 Xue, Y., "Characteristics and mechanisms of phosphate adsorption onto basic oxygen furnace slag" 162 : 973-980, 2009
22 Park, S. J., "Bacterial adhesion to metal oxide-coated surfaces in the presence of silicic acid" 83 (83): 470-476, 2011
23 Rau, I., "Arsenic (V) adsorption by immobilized iron mediation: Modeling of the adsorption process and influence of interfering anions" 54 : 85-94, 2003
24 Park, K. S, "Application of steel slag for suppressing contaminant liberation from the sea sediment" 16 (16): 132-139, 2002
25 Kim, Y, "An investigation of phosphate adsorbed on aluminum oxyhydroxide and oxide phases by nuclear magnetic resonance" 55 : 243-251, 2004
26 Edzwald, J., "Adsorption of organic compounds by activated carbon. In Water Quality & Treatment: A Handbook on Drinking Water" American Water Works Association 2011
27 Johnson, B. B., "31P nuclear magnetic resonance study of the adsorption of phosphate and phenyl phosphates on γ-Al2O3" 18 : 1104-1111, 2002