저영향개발(Low Impact Development) 기법 적용 지역 토양 · 지하수 환경 영향 평가 방법론 제안 연구

논문상세정보
' 저영향개발(Low Impact Development) 기법 적용 지역 토양 · 지하수 환경 영향 평가 방법론 제안 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 토목역학, 토목재료
  • environmental impact assessment
  • lcia(lifecycleimpactassessment)
  • lid(lowimpactdevelopment)
  • soil-groundwaterenvironmentalquality
  • 저영향개발(lid)
  • 토양·지하수환경건강도
  • 환경영향평가
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
765 0

0.0%

' 저영향개발(Low Impact Development) 기법 적용 지역 토양 · 지하수 환경 영향 평가 방법론 제안 연구' 의 참고문헌

  • 환경영향평가시 저영향개발(LID)기법 적용 매뉴얼 : 1 ~ 27
    환경부 [2013]
  • 토양오염우려기준 : 1 ~ 2
    환경부 [2011]
  • 토양오염 위해성평가지침 : 1 ~ 49
    환경부 [2009]
  • 지하수법령법 : 1 ~ 320
    환경부 [2013]
  • 지하수 수질기준 개선을 위한 선행방안 연구 : 1 ~ 138
    환경부 [2007]
  • 정책 결정자를 위한 수질관련 기준 비교분석 : 1 ~ 184
  • 오염토양・지하수의 자연저감관측기법 적용 외국 사례집, 11-1480083-00146-01
    이민효 국립환경연구원 [2002]
  • 부산광역시 사상공단지역의 지하수 및 토양 위해성 평가
    전항탁 지질공학 19 (3) : 295 ~ 306 [2009]
  • The use of microorganism in ecological soil classification and assessment concepts
    Winding, A. Environmental Technology 62 (2) : 230 ~ 248 [2005]
  • The functional and taxonomic richness of wastewater treatment plant microbial communities are associated with each other and with ambient nitrogen and carbon availability
    Johnson, D. R. Environmental Microbiology [2014]
  • Part 620, Subpart D: Groundwater quality standards
  • Monitored natural attenuation technical guidance
    New Jersey Department of Environmental Protection Site Remediation Program : 1 ~ 46 [2012]
  • Microorganism as indicators of soil health : 21 ~ 45
  • Method for estimation soil ecological quality from existing soil environmental data, Korea, 10-0866909
    Park, J. H. [2008]
  • LID 기술 적용을 통한 공동주택단지 물순환 개선 연구 - 침투시설 적용을 중심으로 -
    서주환 한국조경학회지 41 (5) : 68 ~ 77 [2013]
  • Key elements in a framework for land use impact assessment within LCA
    Canals, L. M. The International Journal of Life Cycle Assessment 12 (1) : 15 ~ [2007]
  • Guidance on natural attenuation for petroleum releases : 1 ~ 19
  • Groundwater vulnerability assessment using a composite model combining DRASTIC with extensive agricultural land use in Israel’s Sharon region
    Secunda, S. Journal of Environmental Management 54 (1) : 39 ~ 57 [1998]
  • Groundwater quality and quantity in Europe
    Scheidleder, A. European Environment Agency : 47 ~ 52 [1999]
  • Final report: application of nucleic acidbased tools formonitoringmonitored natural attenuation (MNA), biostimulation and bioaugmentation at chlorinated solvent sites : 1 ~ 21
  • Estimating soil ecological quality and its potential applications for sustainable construction
    Ki, D. W. Korean Society of Civil Engineers Conference : 1485 ~ 1488 [2007]
  • Environmental Biotechnology : Principles and Applications
    Rittmann, B. E. McGraw-Hill : 42 ~ 43 [2002]
  • Effectiveness of low impact development practices: Literature review and suggestions for future research
    Ahiablame, L. M. Water, Air, & Soil Pollution 223 (7) : 4253 ~ 4273 [2012]
  • Development of methods for classifying and mapping soil ecological quality using a decision tree algorithm
    Ki, D. W. [2008]
  • Correlation of Dehalococcoides 16S rRNA and chloroethene reductive dehalogenase genes to different geochemcial conditions in chloroethenecontaminated groundwater
    Van der Zaan, B. Applied and Environmental Microbiology 76 (3) : 843 ~ 850 [2010]
  • Comparison of an assay for Dehalococcoides DNA and a microcosm study in prediction reductive dechlorination of chlorinated ethenes in the field
    Lu, X. Environmental Pollution 157 (3) : 809 ~ 815 [2009]
  • Bioaugmentation for groundwater remediation
    Stroo, H. F. Springer : 171 ~ 197 [2012]
  • Analytic hierarchy process:an overview of applications
    Vaidya, O. European Journal of Operational Research 169 (1) : 1 ~ 29 [2006]
  • Accounting for ecosystem services in life cycle assessment, part IIi: toward an ecologically based LCA
    Zhang, Y. Environmental Science & Technology 44 (7) : 2624 ~ 2631 [2010]
  • A study of degradation in petroleum hydrocarbon polluted site by enhancing natural attenuation (III) : 1 ~ 80
    Lee, M. H. [2001]