열처리된 폐콘크리트를 이용한 수용액으로부터 6가 크롬의 흡착 특성

논문상세정보
' 열처리된 폐콘크리트를 이용한 수용액으로부터 6가 크롬의 흡착 특성' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • adsorption
  • calcination
  • crushedconcrete
  • heavy metals
  • hexavalentchrome
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
590 0

0.0%

' 열처리된 폐콘크리트를 이용한 수용액으로부터 6가 크롬의 흡착 특성' 의 참고문헌

  • 해양오염퇴적물 내 인산염 용출차단을 위한 피복소재로서의 몬모릴로나이트 적용
    강구 대한환경공학회지 36 (8) : 554 ~ 560 [2014]
  • 해수에서 6가 크롬 제거를 위한 흡착제로서의 산처리 적니 적용성 검토
    강구 한국농공학회논문집 55 (5) : 17 ~ 23 [2013]
  • Wastewater treatment technology
    Paterson, J. W. Ann Arbour Science : 43 ~ 58 [1975]
  • Use of pyrophyllite clay for fluoride removal from aqueous solution
    Kim, J. H Desalination and Water Treatment 51 (16-18) : 3408 ~ 3416 [2013]
  • Toxicology of trace Elements
    Goyer, R. A. John Wiley & Sons Inc [1977]
  • Toxicology and biological monitoring of metals in humans
    Carson, B. L. Lewis Publishers Inc [1986]
  • The role of phosphate in bacterial interaction with iron-coated surfaces
    Park, S. J. Colloids and Surfaces B : Biointerfaces 68 (1) : 79 ~ 82 [2009]
  • The exchange adsorption of ions from aqueous solutions by organic zeolites. II. Kinetics 1
    Boyd, G. E. Journal of the American Chemical Society 69 (11) : 2836 ~ 2848 [1947]
  • Surface ionization and complexation at the oxide/water interface II. Surface properties of amorphous iron oxyhydroxide and adsorption of metal ions
    Davis, J. A. Journal of Colloid and Interface Science 67 (1) : 90 ~ 107 [1978]
  • Sedimentation of tannery wastewater
    Song, Z. Water Research 34 (7) : 2171 ~ 2176 [2000]
  • Removal of chromium(VI)from aqueous solutions by polymer inclusion membranes
    Kozlowski, C. A. Water Research 36 : 4870 ~ 4876 [2002]
  • Removal of chrome dye from aqueous solutions by mixed adsorbents : fly ash and coal
    Gupta, G. S. Water Research 24 (1) : 45 ~ 50 [1990]
  • Recycling present condition and countermeasure of construction wastes
    Shin, H. Y. News Letter of the Korean Institute of Resources Recycling 2 (1) : 32 ~ 34 [1993]
  • Recovery of metals by ion flotation from dilute aqueous solutions
    Matis, K. A. Separation and Purification Technology 20 : 1 ~ 48 [1991]
  • Pseudo-second order model for sorption processes
    McKay, G. Ho, Y. S. Process Biochemistry 34 (5) : 451 ~ 465 [1999]
  • Performance of an ultra-lowpressure reverse osmosis membrane (ULPROM) for separating heavy metal: effects of interference parameters
    Ozaki, H. Desalination 144 : 287 ~ 294 [2002]
  • Multi-walled carbon nanotubes as adsorbents for the removal of parts per billion levels of hexavalent chromium from aqueous solution
    Pillay, K. Journal of Hazardous Materials 166 (2) : 1067 ~ 1075 [2009]
  • Modeling of metal ion removal from wastewater by electrodialysis
    Mohammadi, T. Separation and Purification Technology 41 (1) : 73 ~ 82 [2005]
  • Microbial chromium(VI)reduction
    Chen, J. M. N. Critical Reviews in Environmental Science and Technology 28 (3) : 219 ~ 251 [1998]
  • Methods and techniques for the selective extraction and recovery of oxoanions
    Roundhill, D. M. Chemical Society Review 31 : 60 ~ 67 [2002]
  • Low-cost adsorbents for heavy metals uptake from contaminated water : a review
    Babel, S. Journal of Hazardous Materials 97 (1) : 219 ~ 243 [2003]
  • Kinetics of adsorption on carbon from solution
    Weber, W. J. Journal of the Sanitary Engineering Division 89 (2) : 31 ~ 60 [1963]
  • Kinetic models for the sorption of dye from aqueous solution by wood
    Ho, Y. S. Process Safety and Environmental Protection 76 (2) : 183 ~ 191 [1998]
  • Ion exchange process for chromium removal and recovery from tannery wastes
    Petruzzelli, D. Industrial & Engineering Chemistry research 34 : 2612 ~ 2617 [1995]
  • Hexavalent chromium ion removal through micellar enhanced ultrafiltration
    Ghosh, G Chemical Engineering Journal 119 (1) : 45 ~ 53 [2006]
  • Fabrication of copper coated polymer foam and their application for hexavalent chromium removal
    Li, C. Reactive and Functional Polymers 88 : 24 ~ 30 [2015]
  • Essentiality of chromium in humans
    Anderson, R. A. Science of the Total Environment 86 (1) : 75 ~ 81 [1989]
  • Equilibrium, kinetics of Cr(V1)extraction with aliquat 336
    Salazar, E. Industrial & Engineering Chemistry research 31 : 1516 ~ 1522 [1992]
  • Equilibrium and kinetics study on hexavalent chromium adsorption onto diethylene triamine grafted glycidyl methacrylate based copolymers
    Maksin, D. D. Journal of Hazardous Materials 209 : 99 ~ 110 [2012]
  • Environmental soil chemistry
    Sparks, D. L. Academic press [1995]
  • Cr(VI)and Cr(III)removal from aqueous solution by raw and modified lignocellulosic materials : a review
    Miretzky, P. Journal of Hazardous Materials 180 (1) : 1 ~ 19 [2010]
  • Chromium in nutrition and disease
    Saner, G. Alan R. Liss [1980]
  • Chromium environmental issues
    Canali, S. FrancoAngeli [1997]
  • Chromate adsorption on amorphous iron oxyhydroxide in the presence of major groundwater ions
    Zachara, J. M. Environmental Science & Technology 21 (6) : 589 ~ 594 [1987]
  • Chromate adsorption by kaolinite
    Zachara, J. M. Clays and Clay Minerals 36 (4) : 317 ~ 326 [1988]
  • Characterization of electrocoagulation for removal of chromium and arsenic
    Parga, J. R. Chemical Engineering & Technology 28 (5) : 605 ~ 612 [2005]
  • Calcination effect of diatomite to chromate adsorption
    Sungworawongpana, S. Procedia Engineering 8 : 53 ~ 57 [2011]
  • CERCLA List of priority hazardous substances
    U. S. EPA. [2009]
  • Bacteriophage removal by Ni/Al layered double hydroxide in batch and flow-through column experiments
    Park, J. A. Journal of Environmental Science and Health, Part A 47 (13) : 2060 ~ 2068 [2012]
  • Bacterial adhesion to metal oxide-coated surfaces in the presence of silicic acid
    Park, S. J. Water Environment Research 83 (5) : 470 ~ 476 [2011]
  • Aqueous geochemistry of chromium : a review
    Richard, F. C Water Research 25 (7) : 807 ~ 816 [1991]
  • Application of chitosan for the removal of metals from wastewaters by adsorption—mechanisms and models review
    Gerente, C. Critical Reviews in Environmental Science and Technology 37 : 41 ~ 127 [2007]
  • Advances in treating heavy metals containing wastes
    Tels, M. Resources and Conservation 14 : 71 ~ 92 [1987]
  • Adsorption of organic compounds by activated carbon. In Water quality & treatment : A handbook on drinking Water, 6th Ed
    Edzwald, J. American Water Works Association [2011]
  • Adsorption of hexavalent chromium from aqueous solution by using activated red mud
    Pradhan, J. Journal of Colloid and Interface Science 217 (1) : 137 ~ 141 [1999]
  • Adsorption of chromium(III), chromium(VI)and silver(I)on bentonite
    Khan, S. A. Waste Management 15 (4) : 271 ~ 282 [1995]
  • Adsorption of Co(II)from aqueous medium on natural and acid activated kaolinite and montmorillonite
    Bhattacharyya, K. G. Separation Science and Technology 42 (15) : 3391 ~ 3418 [2007]
  • Activated carbons and low cost adsorbents for remediation of tri-and hexavalent chromium from water
    Mohan, D Journal of Hazardous Materials 137 : 762 ~ 811 [2006]
  • A study on development of re-use Technique waste concrete
    Lee, J. Y. Civil Engineering 46 (12) : 11 ~ 16 [1998]
  • 6가 크롬 처리를 위한 알루미늄 산화물을 함유한 재생 분말 폐기물의 적용
    임재우 대한환경공학회지 31 (3) : 179 ~ 185 [2009]