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    산업폐기물을 이용한 수용액 중 인산염의 흡착 제거 = Phosphate Removal of Aqueous Solutions using Industrial Wastes

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    https://www.riss.kr/link?id=A100923958

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The present study was conducted to investigate phosphate removal from aqueous solution using industrial wastes, red mud (RM), acid treated red mud (ATRM) and converter furnace steel slag (CFSS). The chemical composition of adsorbents was analyzed using X-ray fluorescence (XRF). Batch experiments and elution experiments using water tank were performed to examine environmental factors that influences on phosphate removal. Kinetic sorption data of RM, ATRM, and CFSS were described well by the pseudo second-order kinetic sorption model, and equilibrium sorption data of all adsorbents obeyed Freundlich isotherm model. The adsorption capacities of adsorbents followed order: ATRM (7.06 mg/g)>RM (4.34 mg/g)>CFSS (1.88 mg/g). Increasing pH from 3 to 11, the amount of adsorbed phosphate on all RM, ATRM, and CFSS were decreased. The presence of sulfate and carbonate decreased the phosphate removal of RM and ATRM but did not influence on the performance of CFSS. The phosphate removal of RM, ATRM, and CFSS was greater in seawater than deionized water, resulting from the presence of cations in seawater. The water tank elution experiments showed that RM capping blocked the elution of phosphate effectively. It was concluded that the adsorbents can be successfully used for the removal of the phosphate from the aqueous solutions.
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    The present study was conducted to investigate phosphate removal from aqueous solution using industrial wastes, red mud (RM), acid treated red mud (ATRM) and converter furnace steel slag (CFSS). The chemical composition of adsorbents was analyzed usin...

    The present study was conducted to investigate phosphate removal from aqueous solution using industrial wastes, red mud (RM), acid treated red mud (ATRM) and converter furnace steel slag (CFSS). The chemical composition of adsorbents was analyzed using X-ray fluorescence (XRF). Batch experiments and elution experiments using water tank were performed to examine environmental factors that influences on phosphate removal. Kinetic sorption data of RM, ATRM, and CFSS were described well by the pseudo second-order kinetic sorption model, and equilibrium sorption data of all adsorbents obeyed Freundlich isotherm model. The adsorption capacities of adsorbents followed order: ATRM (7.06 mg/g)>RM (4.34 mg/g)>CFSS (1.88 mg/g). Increasing pH from 3 to 11, the amount of adsorbed phosphate on all RM, ATRM, and CFSS were decreased. The presence of sulfate and carbonate decreased the phosphate removal of RM and ATRM but did not influence on the performance of CFSS. The phosphate removal of RM, ATRM, and CFSS was greater in seawater than deionized water, resulting from the presence of cations in seawater. The water tank elution experiments showed that RM capping blocked the elution of phosphate effectively. It was concluded that the adsorbents can be successfully used for the removal of the phosphate from the aqueous solutions.

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    참고문헌 (Reference)

    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

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    연월일 이력구분 이력상세 등재구분
    2022 평가 계속평가 신청대상 (등재유지)
    2017-01-01 등재 우수등재학술지 선정 (계속평가)
    2015-12-02 학술지명변경 외국어명 : 미등록 -> Journal of the Korean Society of Agricultural Engineers KCI등재
    2013-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2005-06-07 학술지명변경 한글명 : 한국농공학회지 -> 한국농공학회논문집 KCI등재
    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.53 0.53 0.45
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.41 0.41 0.525 0.08
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