• Title/Summary/Keyword: 중금속 분석

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Heavy Metal Accumulation of Small Mammals in Gumbo River Basin (금호강에 서식하는 소형포유류의 중금속축적에 관한 연구)

  • 이상돈
    • Korean Journal of Environmental Biology
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    • v.21 no.3
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    • pp.257-261
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    • 2003
  • Population of small mammals (Apodemus agrarius and Crocidura lasiura) was monitored to identify the bioaccumulation of heavy metals in Gumho river basin around Daegu city. The small mammals were captured during 28 of May~12 of June, 2002. The techniques of live-trapping and snap-trapping were applied to capture the animals. A total of 39 animals were captured among which 53.3% (16130) of population were reached to breeding. Heavy metals (Cu, Pb, Zn, Cd) were analyzed. According to the analysis of heavy metal elements, Zn was more accumulated in kidney (6.83 mg $kg^{-1}$) than in liver (3.66). However, the accumulation of Cu was higher in liver than in kidney. Even though this site was relatively away from major industrial zones, heavy metals were wide spread along the stream of Gumbo River. This is the first quantitative study of small mammal bioaccumulation of heavy metals in Korea so that further research should be followed in other industrial areas that heavy metals were widely dispersed.

Removal Efficiency of Heavy Metals and Nutrients by Zeolite and Basic Oxygen Furnace Slag (제올라이트와 제강슬래그에 의한 중금속과 영양염류 복합오염물질의 제거 효과)

  • Kim, Yongwoo;Oh, Myounghak;Park, Junboum;Kwon, Osoon
    • Journal of the Korean GEO-environmental Society
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    • v.15 no.11
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    • pp.13-19
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    • 2014
  • Permeable reactive barrier has been recognized as the one of representative methods for remediation of contaminated groundwater. Reactive barrier system containing two and more reactive materials can remove multiple contaminants such as nutritive salts and heavy metals. In this study, removal efficiency of multiple contaminants was evaluated when both zeolite and basic oxygen furnace slag were used as reactive materials. Sequential batch test which consists of two materials was performed to evaluate removal efficiency comparing the reaction order of them against nutritive slats including ammonium and phosphate and heavy metal including cadmium. As a result, zeolite-basic oxygen furnace slag sequence batch test showed the best efficiency for removal of multiple contaminants including nutritive salts and heavy metal.

Heavy Metal Wastewater Treatment (Batch Mode) by Domestic Zeolite (국산(國産) Zeolite를 이용(利用)한 중금속(重金屬) 폐수(廢水) 처리공정(處理工程) 연구(硏究) - Batch Test를 중심(中心)으로 -)

  • Shin, Eung Bai
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.2 no.1
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    • pp.63-68
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    • 1982
  • This study was aimed ultimately to develop an adsorption process treating heavy metal industrial wastewater by utilizing domestically abundant natural zeolite and the study was conducted in a series of investigations. Presented if1 this paper are the results of the preliminary batch mode test. Factors affecting an adsorption process of heavy metals of aqueous waste stream by zeolite are numerous. Factors such as hydrogen ion concentration and temperature are taken into consideration in the investigation to evaluate adsorptive capacity. The mechanisms of adsorption may better be described by an evaluation of adsorption isotherm andi of adsorption kinetics. It is observed from the preliminary investigation that an optimum adsorption occurs at higher pH's than 4. It is further demonstrated that $Cd^{+2}$ adsorption by zeolite follows the BET model better than the Freundlich and the Langmuir model and that the reaction time of at least 10 minutes is required. It is interesting to note that higher adsorptive capacity was found at higher temperature, suggesting that the adsorption is not only due to simple physisorption but also due to chemisorption.

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Removal Characteristics of Mixed Heavy Metals from Aqueous Solution by Recycled Aggregate as Construction Waste (건설폐기물인 순환골재를 이용한 수용액상에서의 혼합 중금속 제거 특성)

  • Shin, Woo-Seok;Kim, Young-Kee
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.16 no.2
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    • pp.115-120
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    • 2013
  • This study examined the removal rate of mixed heavy metals from aqueous solution using recycled aggregate. The recycled aggregate is favorable for the absorbent because it contains about 95% (CaO, $SiO_2$, $Al_2O_3$ and $Fe_2O_3$), which are major ingredient of adsorbent for heavy metal. The kinetic data presented that the slow course of adsorption follows the Pseudo first and second order models. The equilibrium data were well fitted by the Langmuir model and showed the affinity order: $Cu^{2+}$ > $Pb^{2+}$ > $$Zn^{2+}{\simeq_-}Ni^{2+}$$ > $Cd^{2+}$. The results also showed that adsorption rate slightly increased with increasing pH from 6 to 10. Moreover, this trend is similar to results obtained as function of loading amount of recycled aggregate. Meanwhile, an unit adsorption rate was slightly decreased. From these results, it was concluded that the absorbents can be successfully used the removal of the heavy metals from the aqueous solutions.

Heavy Metal Contamination in Roadside Sediments within the Watershed of the Hoidong Reservoir in Busan City (부산시 회동저수지 집수분지 내 주요 도로변 퇴적물의 중금속 오염 평가)

  • Youm Seung-Jun;Lee Pyeong-Koo;Yeon Kyu-Hun;Kang Min-Ju
    • Economic and Environmental Geology
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    • v.38 no.3 s.172
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    • pp.247-260
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    • 2005
  • Extractable concentrations (0.1 N & 1.0 N HCI) of heavy metals in roadside sediments are lower than guidelines for soil recommended by Ministry of Environment. Heavy traffic areas (such as No. 7 national road) show high contents of heavy metals, especially, at curved areas, gully pot, crackdown areas on overspeed, pedestrian crossing etc. Fine fractions $(<63\;{\mu}m)$ of roadside sediments have the highest concentrations of heavy metals, but mass loadings of heavy metal are determined by coarse fractions $(>100{\mu}m)$, due to washing out of fine fraction sediment by runoff water. Proper treatment facilities are needed to control the inflow of fine roadside sediments from No. 7 national road and bridge such as Hanmul bridge.

The effect of sewage sludge compost amended soils on the growth of Orchardgrass seedlings (하수오니 첨가토양이 Orchardgrass 유식물체의 생육에 미치는 영향)

  • Lee, Ju Sam
    • Journal of the Korea Organic Resources Recycling Association
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    • v.2 no.2
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    • pp.77-88
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    • 1994
  • This experiment was carried out to investigate the effect of sewage sludge compost amended soils on the growth and accumulation patterns of heavy metals in plant parts of Orchardgrass seedlings, changes in physical properties and chemical composition, and heavy metal residue in soils. Mixture ratios of sewage sludge compost and soil(loam) were 100:0, 80:20, 60:40, 40:60, 20:80 and 0:100(control), respectively. The results obtained were as follows; 1. The physical properties and chemical compostion of soils were improved by increase in mixture ratios of sewage sludge compost. 2. The biological yield of Orchardgrass seedlings was increased with mixture ratios of sewage sludge compost. 3. The dry weight of shoot(SH) was increased with both of yield components(NT and WT) and biological yield of Orchardgrass seedlings. 4. The total nitrogen concentrations(TN) of plants was increased with quadratically up to the biological yield of 100% mixture ratio of sewage sludge compost. 5. Lead(Pb) concentration of soil in over the 60% mixture ratios of sewage sludge compost were in excess of limiting level(50ppm) of organic fertilizers.

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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.

Chemical Forms and Release Potential of Heavy Metals from the Lime Treated Sediments (석회 처리에 의한 오염 퇴적물 내 중금속의 형태 변화 및 용출 가능성)

  • Park, Gil-Ok;Jun, Sang-Ho
    • Korean Journal of Ecology and Environment
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    • v.41 no.2
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    • pp.166-173
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    • 2008
  • Chemical forms and release potential of heavy metals were studied in the lime treated sediment of lake Chungcho. Chemical forms of heavy metals were analyzed using a sequential extraction method, and release potential of heavy metals was evaluated by the ratio of the content of labile forms to total metal one. Dominant form of Cd, Cu, Pb, and Zn in the untreated sediments was organic/sulfidic form that is stable in the reducing environment such as the bottom of Lake Chungcho. With liming of the sediment, the chemical forms of studied metals were greatly changed from organic/sulfidic form to adsorbed and reducible form, especially Cd and Cu to adsorbed and reducible form, but Pb and Zn to reducible form. It is believed that increase of unstable form of heavy metals in the sediments by liming was caused by the increase of pH of the pore water at the expense of organic/sulfidic form. Thus, we concluded that the liming approach currently used in the treatment of dredged sediments might cause the increase of labile form which is easily dissolved, and may increase the release of metals from the sediment into overlying water.

Soil Components and Elution Characteristics of Heavy Metals in Sediments of Andong and Imha Reservoir (안동・임하호 저니토의 토양 성분과 중금속 용출 특성)

  • Seo, Eulwon;Kim, Younjung;Baek, Seungcheol
    • Journal of the Korean GEO-environmental Society
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    • v.9 no.4
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    • pp.47-52
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    • 2008
  • In this study, it was analyzed the soil components and elution characteristics of heavy metal ions in sediment samples to examine the effect of sediments embedded in Andong and Imha reservoirs on water quality. Major elements of sediments were shown to be Al, Si, K, and Fe by EDS analysis and major soil components of the collected 6 different sediments were illite (I), kaolinite (Ka), quartz (Q) and feldspar (F). And especially quartz took up a considerable part of sediments by XRD analysis. The total concentrations of Zn, As, Cr, Cu and Pb in sediments of Andong reservoir were relatively higher than those of Imha reservoir. The elution property of heavy metal from sediments had various aspects according to pH. Among the heavy metals in Andong reservoir sediments, As and Zn were significantly eluted at pH 6 compared with the other heavy metals. In the case of the adsorption tests using the sediments, the adsorptive capacities of Zn, Cd and Cu were very weak, on the while those of Pb and Cr were high.

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Distribution and Pollution Assessment of Heavy Metals in Surface Sediments Near Gwangan Bridge (광안대교 인근 퇴적토 중의 중금속 농도 및 오염도 조사 연구)

  • Lee, Junho;Yang, Changgeun;Lee, Taeyoon
    • Journal of the Korean GEO-environmental Society
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    • v.19 no.11
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    • pp.15-22
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    • 2018
  • The main objective of this study was to analyse heavy metals in sediments obtained from Gwangan bridge and to evaluate pollution intensity of the sites. To evaluate pollution intensity of the sites, we used enrichment factor (EF), geoaccumulation index, potential ecological risk factor (PERF), and mean PEL quotient. Pollution intensities of these sites were evaluated by above methods, and we found most dangerous heavy metal and polluted sites. All sites showed non polluted or low risk for the heavy metals such as Cr, Cu, Ni, Pb, and Zn, but all sites were categorized as minor enrichment for Cd. G4 was evaluated as moderately polluted by Cd ($I_{geo}$) but other sites were unpolluted by heavy metals. In summary, Cd was found to be higher concentrations for all sites. For G4 and G5 sites, Pb and Zn in addition to Cd were higher than other sites.