• Title/Summary/Keyword: 생물오염

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Soil Pollution Assessment Based on Ecotoxicological Methods (생태독성학적 기법을 이용한 토양오염평가 방안)

  • An Youn-Joo;Jeong Seung-Woo
    • Journal of Soil and Groundwater Environment
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    • v.10 no.6
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    • pp.56-62
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    • 2005
  • Chemical analyses are generally used to assess contaminated soils and to monitor the efficiency of soil remediation. In this study, the ecotoxicological methods was suggested to evaluate soil pollution by using a battery of bioassay. Plant assay and earthworm assay were conducted to evaluate ecotoxicity o soils contaminated by heavy metals (cadmium and copper) and oil (BTEX compounds, toluene). Test plants were Zea may, Triticum aestivum, Cucumis sativus, and Sorghum bicolor. The presence of heavy metals decreased the seedling growth. Cucumis sativus and Sorghum bicolor seemed to be good indicator plants which are sensitive to heavy metal pollution as well as BTEX contamination. An earthworm bioassay was performed to predict the ecotoxicity in toluene-contaminated soils, based on a simple contact method. Perionyx excavatus was adopted as a test earthworm species, and the severity of response increased with increasing toluene concentration. The present study demonstrated that ecotoxicological methods could be a quantitative approach to evaluate contaminated soils.

Evaluation of Heavy Metal Contamination for Bongam Tidal Flat Sediments in Masan Bay, Korea (마산만 봉암갯벌 퇴적물의 중금속 오염도 평가)

  • Lee, Chan-Won;Jeon, Hong-Pyo;Lee, Sung-Jin
    • Journal of Wetlands Research
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    • v.12 no.3
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    • pp.15-20
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    • 2010
  • The contamination loadings generated in Changwon City are coming into Masan Bay through the Bongam tidal flat except the loadings collected and transferred by sewer lines to the wastewater treatment plant. The recovery of waterbirds, shellfishes, and fishes has been quite well recognized in recent years after the first implementation of Masan Bay TPLM (Total Pollution Loads Management) in Korea. This tidal flat has been conserved by the cooperation of several stakeholders and utilized as an ecosystem field site for in situ education. A large industrial complex has been operated since 1970's, therefore increasing the level of pollutants in estuary and costal sediments, especially by heavy metals. Zinc, copper, and lesd contamination of sediment was revealed at higher level by Clean-up guideline (MOMAF) or heavily polluted level by SQC (USEPA). There was a significant difference between two sites at the 95% confidence level, which implies no homogeneity in the processes of transport and deposition even at 500 m of distance. The heavy metal concentrations in the Bongam sediments have been gradually decreased with comparing the data of 2006, and 2009.

효율적인 Bioventing 공정을 위한 모니터링 시스템 개발

  • 문원재;오영진;왕성환;박태주
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2002.09a
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    • pp.359-361
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    • 2002
  • 국내에서는 1990년대 이후부터 주유소 및 유류저장시설 부근의 토양 및 지하수오염에 관한 법이 제정되었으며 그와 관련된 복원 및 정화 기술개발에 관한 연구가 진행되고 있다. 그 중 미생물학적 대사를 이용하는 생물학적복원기술(Bioremediation)은 유류로 오염된 지역에서 정화 및 복원방법으로 적용되고 있으며 또한 경제적인 대안으로 제시되고 있다. Bioremediation기법중 하나인 bloventing은 운전 및 처리비용의 감소와 효율의 향상적인 측면에서 여러 연구자들에 의해 수행되고 있다. 기존에는 오염토양에 대한 물리ㆍ화학적 분석과 미생물 활성에 미치는 인자의 측정이 주를 이루었다. 그러나, 최근에는 토양 가스내 $CO_2$ $O_2$의 측정ㆍ분석을 통한 분해율 평가와 탄화수소 분해에 대한 경과 및 복원시간을 예측하고자 하는 연구가 이루어지고 있는 중이다. 본 연구의 목표는 유류오염지역을 복원하기 위한 기술 중 생물학적 복원기술(bioremediation)의 하나인 bioventing 기술의 국내 적용가능성을 알아보고 궁극적으로 국내 실정에 적합한 bioventing공법의 개발을 목표로 한다. 이를 위해 lab-scale bioventing process를 이용하여 생부해를 최대화시키고 오염성분의 휘발을 최소화시키는 bioventing system의 최적운전 mode(연속식, 간헐식)를 개발하기 위해 공기공급량과 생분해량, 그리고 휘발되는 탄화수소양과의 관계를 평가하는 연구를 수행하였다.

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Recent Development of Removal and Treatment of Toxic Heavy Metals by Microorganisms (유독 중금속 오염물질 처리를 위한 미생물균주의 최근 이용 및 개발)

  • 방상원;최영길;한명수
    • Korean Journal of Environmental Biology
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    • v.19 no.2
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    • pp.93-99
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    • 2001
  • There are several ways to remove and treat toxic heavy metals in the environment: chemical, physical and biological ways. The biological treatment utilizes the natural reactions of microorganisms living in the environments. These reactions include biosorption and bioaccumulation, oxidation and reduction, methylation and demethylation, metal - organic complexation and insoluble complex formation. The biological reactions provide a crucial key technology in the remediation of heavy metal-contaminated soils and waters. According to recent reports, various kinds of heavy metal species were removed by microorganisms and the new approaches and removal conditions to remediate the metals were also tried and reported elsewhere. This was mostly carried out by microorganisms such as fungi, bacteria and alga. In addition, a recent development of molecular biology shed light on the enhancing the microorganism's natural remediation capability as well as improving the current biological treatment.

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A Study on Remediation of Diesel-Contaminated Soil by Biosurfactant- Enhanced Soil Washing (생물계면활성제를 이용한 디이젤 오염토양세척기술에 관한 연구)

  • 문혜준;임영경;김윤관;주춘성;방기연;정욱진;이승우
    • Journal of Soil and Groundwater Environment
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    • v.7 no.2
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    • pp.13-22
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    • 2002
  • Soil washing by surfactants is a technology to enhance mobilization and subsequent degradation of oil pollutants by reducing the surface tension of pollutants which is combined with soil. In this study, biosurfactant, rhamnolipid was produced from Pseudomonas aemginosa ATCC 9027 which had an excellent biodegradable activity in soil without causing secondary pollution. Effects of chemical surfactants on the removal of diesel from diesel-contaminated soil were compared to those of biosurfactants including rhamnolipid. Diesel removal efficiency by rhamnolipid extracted from P. aeruginosa culture broth was over 95% in both batch and column washing test in 5,000ppm diesel-contaminated soil with 1% surfactants after washing for 24 hours. On the contrary, the results of chemical surfactants were below 50∼80%, The chemical surfactants with HLB value(8∼15) showed more then 75% efficiency of diesel removal. But, when the HLB values were below 8 or over 15. their efficiency were observed as less then 60% of diesel removal. Rhamnolipid, biologically produced surfactants, may also be promising agent for enhancing diesel removal from contaminated soil.

The Summer Benthic Environmental Conditions Assessed by the Functional Groups of Macrobenthic Fauna in Gwangyang Bay, Southern Coast of Korea (저서동물에 의한 여름철 광양만의 저서환경 상태파악)

  • Choi, Jin-Woo;Hyun, Sang-Min;Chang, Man
    • Korean Journal of Environmental Biology
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    • v.21 no.2
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    • pp.101-113
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    • 2003
  • The spatial distributional pattern of macrobenthic fauna was investigated to assess the summer benthic environmental conditions in Gwangyang Bay, the southern coast of Korea. The macrobenthic faunal community from 38 sites in Gwangyang Bay comprised 154 species and showed an overall mean density of 1,280 individuals $m^{-2}$. Polychaetes were the most important component of the macrofaunal community in species richness, abundance and biomass. The dominant species in abundance were polychaetes like Tharyx sp. (44.8%), Lumbrineris longifolia (14.0%), Heteromastus filiformis (3.6%), a mussel Mytilus edulis, and an amphipod crustacean Corophium sinense. The abundance and biomass in the western part of the bay were lower than those in the channel regions and mouth of the bay. The community indices showed the same trend in the spatial distribution with the abundance and species richness. All macrobenthic faunas were assigned into a specific functional group according to their ecological responses to the environmental stress. The benthic community health based on the Benthic Pollution Index (BPI) or Biotic Coefficient (BC) seemed to be in the normal to unbalanced er transitional condition, indicated by the dominance of small polychaete worms like Tharyx sp. in the mouth part of the bay.