• Title/Summary/Keyword: polluted soil

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Remediation of Heavy Metal Polluted Agricultural Field with Spent Mushroom Media

  • Chang, Hee Je;Hong, Young-Kyu;Kim, Soon-Oh;Lee, Sang-Woo;Lee, Byung-Tae;Lee, Sang-Hwan;Park, Mi-Jung;Kim, Sung-Chul
    • Korean Journal of Soil Science and Fertilizer
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    • v.49 no.1
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    • pp.66-74
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    • 2016
  • Environmental pollution from abandoned metal mines has been awarded as serious problem and many techniques have been applied to remediate pollutants. Main objective of this research was to evaluate efficiency of heavy metal sorption capacity of spent mushroom media (SMM) in aqueous and soil matrix. Laboratory batch experiment was conducted and 4 different heavy metals (Cd, Pb, Cu, Zn) were evaluated. In aqueous phase, all 4 heavy metals showed high reduction efficiency ranged from 60-99% and Pb showed the highest sorption efficiency. In case of soil phase, much lower sorption efficiency was observed compared to aqueous phase. The highest reduction efficiency was observed in Cd (average of 38%). With scanning electron microscopy energy dispersive detector (SED-EDS) analysis, we confirmed sorption of heavy metals at the surface of SMM. Overall, SMM can be used as sorption materials for heavy metals in both aqueous and soil matrix and more research should be conducted to increase sorption efficiency of SMM in soil.

Comparison between Siderophores Production by Fungi Isolated from Heavy Metals Polluted and Rhizosphere Soils

  • Hussein, Khalid A.;Joo, Jin Ho
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.5
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    • pp.798-804
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    • 2012
  • Although siderophores are induced primarily in response to iron deficiency, soil and other ecological factors can affect on this process. This study was to evaluate the production of siderophores by different fungal species isolated from heavy metal contaminated and uncontaminated soils. More than thirty fungal strains were isolated from heavy metal contaminated and rhizosphere uncontaminated soils. Chrome azurol sulfonate (CAS) was used for both quantitative and qualitative evaluation of siderophores production. No significant correlations were observed between the tested variables such as ultraviolet (UV) irradiation method and CAS-agar plate and heavy metal concentration in both soils. The production of siderophores in rhizosphere fungi was higher than those isolated from the contaminated soil; however, the difference was not significant. The siderophore production (%) by fungi isolated from heavy metal contaminated soil using UV irradiation method was positively correlated with the qualitative values using CAS-plate method (P<0.05). Pearson correlation test indicated a positive correlation between the quantitative and qualitative methods of detection for fungi isolated from rhizosphere and also those isolated from heavy metal contaminated soil.

Influence of Forest Practices on Soil Physical Properties and Facility of Purifying Water Quality in Pinus rigida Stands (리기다소나무 임분에서 산림관리작업이 토양의 물리성 및 산림의 수질정화기능에 미치는 영향)

  • Park, Jae-Hyeon
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.10 no.2
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    • pp.61-70
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    • 2007
  • This study aims to clarify the effect of forest management practices(thinning and pruning) on soil physical properties and water quality to get the fundamental information on the facility of purifying water quality after forestry practices. Rainfall, throughfall, stemflow, soil and stream water were sampled at the study site which consists of Pinus rigida in Jinju National University Experimental Forest for 4 years from Mar. 1, 2002 to Nov. 30, 2006. Averaged tree height of the management site increased by 1.6m, compared to the value of the non-management site in Pinus rigida. Increment of averaged D. B. H. at the management site showed 4.2cm more in Pinus rigida compared with that at non-management sites. Mesopore ratios (pF2.7) and total porosities of A layer soil at the management site increased more than those at the non-management sites in both stands. Otherwise, soil bulk density resulted in being reversely. Water qualities of throughfall, stemflow and buffered soil water were influenced more positively by the management practice. The average electrical conductivity of stream water was $32.9{\mu}S/cm$ within the range of non-polluted stream water.

Effect of organic matter addition on the solubility of arsenic in soil and uptake by rice: a field-scale study (유기물 시용이 토양 내 비소의 용해도와 벼의 비소 흡수에 미치는 영향)

  • Yoo, Ji-Hyock;Kim, Dan-Bi;Kim, Won-Il;Kim, Sung-Chul
    • Journal of Applied Biological Chemistry
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    • v.64 no.4
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    • pp.439-446
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    • 2021
  • A field-scale study was conducted to evaluate the effect of organic matter amendments on the solubility of arsenic (As) in paddy soil and uptake by rice. Six organic matter (rice bran, rice straw, pig/cattle/fowls manure compost and swine liquid manure) were added to two polluted soils with high As (53 mg kg-1) and low As concentration (28 mg kg-1), and changes in soil solution constituents was monitored. The mean As concentrations in soil solution from the high As soil with rice bran, pig manure compost and swine liquid manure addition were significantly higher (0.61-1.15 mg L-1) than that of the control (0.42-0.66 mg L-1). Regression between As and Fe in soil solution indicated that As was attributable to reductive dissolution of Fe (hydr)oxides and it was driven by organic matter addition. Mean As concentrations in brown rice from the high As soil were 0.35-0.46 mg kg-1, above the maximum safety level of inorganic As (0.35 mg kg-1), and tended to be higher in organic matter amended soils than that of the control. The significant correlation between grain As and soil solution As was not observed and it was probably attributable to As tolerance of rice causing the reduction of As uptake and/or translocation to grain. However, considering the significant As release in soil solution from the high As soil and the tendency of grain As elevation after organic matter addition, it is needed to be cautious for food safety when amending organic matter to paddy soil with high As concentration.

A Study on Fractions and Leaching Potential of Heavy Metals in Abandoned Mine Wastes (휴ㆍ폐광산지역에서 폐재내 중금속의 존재형태 및 용출특성에 관한 연구)

  • 김휘중;양재의;이재영;전상호
    • Journal of Soil and Groundwater Environment
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    • v.8 no.3
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    • pp.45-55
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    • 2003
  • This study investigates the fractional composition and the leaching characteristics of heavy metals in polluted soils due to mining activities. The fractionated composition of heavy metals is classified into five fractions; adsorbed, carbonate, reducible, organic and residual fraction. The status of humic substances in mine wastes of most sites are polyhumic except tailing from Sangdong mine. According to the sequential extraction procedures (SEPs), leaching probabilities of Cd in coal wastes and tailing are relatively low due to high percentage of residual fraction. 46.4% of Ni in tailings from Sangdong mine is probably leached under oxidized environment, and 39.4% of Cu in these tailings is readily extracted under strongly oxidized environment by organic fraction. According to leaching condition of pH 3.0 and pH 5.6, the amount of heavy metals leached out of coal wastes and tailing increases to 1/2 hours. At pH 3.0 and pH 5.6, concentration of Ni in tailing increases up three times of the initial value. Heavy metals released from coal wastes and tailing were not influenced significantly by leaching time.

Residues of Heavy metals in Culture Environment of Ginseng at Gyeongbuk, Korea (경북지역 인삼 재배 환경 중 중금속의 잔류)

  • Park Moon-Ki;Kim Jung-Ho
    • Journal of Environmental Science International
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    • v.15 no.2
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    • pp.163-167
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    • 2006
  • To obtain the safety evaluation of the ginseng, residues of heavy metals in culture environment of ginseng on Punggi and Sangju, Kyeongbuk are surveyed. The concentration for component of ginseng on Punggi and Sangju were 14.12mg/kg and 15.74mg/kg, respectively. The concentration for general component such as crude fiber, ash, crude lipid, crude protein, carbohydrate, of ginseng were coincided between Punggi and Sangju. The concentration for As, Pb, Cd, and Hg in soil on Punggi were 14.24 ppb, 43.13 ppb, 8.73 ppb and 0.82 ppb, respectively. The concentration for As, Pb, Cd, and Hg in soil on Sangju were 19.20 ppb, 54.82 ppb, 15.90 ppb and 1.04, respectively. Residual heavy metals are not polluted in the soil with culture ginseng on Punggi and Sangju. The concentration for As, Pb, Cd, and Hg with ginseng on Punggi were 29.30ppb, 21.78 ppb, 1.32 ppb and 2.72 ppb, respectively. The concentration for As, Pb, Cd, and Hg with ginseng on Sangju were 3.22 ppb, 24.43 ppb, 1.44 ppb and 4.74 ppb, respectively. Also the detection concentration for As, Pb, Cd, and Hg in ginseng were also lower than the Korea Food & Drug Administration advisory level for heavy metal in herbal medicines. Residual heavy metals are not polluted in the ginseng on Punggi and Sangju at Kyeongbuk, Korea.

Effects of Silicate and Potassium Application on the Yield of Rice Irrigated with Polluted Water and Underground Water (벼에 대한 오염관개수(汚染灌漑水) 및 지하수(地下水) 관개시(灌漑時) 규산(珪酸)과 가리(加里)의 시용효과)

  • Lee, Ki-Sang
    • Korean Journal of Soil Science and Fertilizer
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    • v.26 no.4
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    • pp.304-307
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    • 1993
  • An experiment was conducted to evaluate the effects of silicate and potassium application on the yield of rice irrigated with polluted water and ground water. 1. The most important component affecting plant growth in polluted water was $NH_4-N$. 2. Rice grain yield was increased by silicate and potassium application, and yield increase of silicate and potassium was higher than that of single application of silicate and potassium. 3. The ratios of $SiO_2$/T-N and $K_2O$/T-N in shoot of rirc plant increased with silicate and potassium application, but the absorption of nitrogen by rice plant was decreased. 4. Lodging index was increased by the application of polluted water, and the application of silicate and potassium reduced the lodging.

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Remediation of Polluted Soil by Plant (유용식물을 이용한 오염토양 정화기술 개발)

  • 이상환;이문용;현승훈;윤영만;김정규;임수길
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1997.05a
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    • pp.116-119
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    • 1997
  • 광산지 및 쓰레기매립지의 오염토양을 정화하는데 식물의 이용가능성을 평가하기 위하여 강원도, 경상북도 지역에 분포하는 17곳의 폐광산과 강원도에 분포하는 농촌형 일반 쓰레기매립지 6곳을 대상으로 광산지와 매립지의 토양 특성을 조사하고, 서식 식물종의 오염 물질 제거 능력과 개척종으로서의 가능성을 평가하였다. 광산지 토양의 경우 산성화가 진행된 곳이 많았고, 중금속함유량도 전국 토양의 평균함유량보다 훨씬 높게 나타났으나, 매립지의 경우 약알카리성 토양이 많았고, 광산지와 달리 중금속 오염의 우려는 없었다. 오염토양에 서식하는 쑥을 포함한 14종의 식물체중에서 오염토양정화기술에 이용 가능한 유용식물로 Aremisia princeps(쑥), Micanthus sinensis(억새), Oenanthera odorata(달맞이 꽃)등이 중금속의 흡수력과 지상부로의 이행력이 큰 식물종으로 나타나 phytoremediation에 있어서 개척종으로 이용가능할 것으로 판단되었다.

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Effects of Air Pollution on Physiological characteristics of Styrax japonica in Yeolchon Industrial Complex (여천공단주변 대기오염이 때죽나무의 생장 특성에 미치는 영향)

  • 김동근
    • Journal of Korean Society for Atmospheric Environment
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    • v.16 no.2
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    • pp.121-128
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    • 2000
  • To identify the effects of air pollution on several physiological characteristics of Styrax japonica in Yeochon industrial comples soil properties photosynthetic capacity and chorophyll contents were investigated. All of these measurements were taken on Styrax japonica stand at 1. 3 and 7km from an industrial complex which is an air pollution source. In addition a Styrax japonica stand in Sang-ju city was selected as a control Each physiological measurement was in leaves of east-, west- south- and north-facing branches. The results obtained were as follows: 1) Al contents of soil in Yeochon industrial complex were higher than those of Sang-ju city a non-polluted area. higheral contents contributed to decrease in soil pH. 2) Chlorophyll contents of leaves at 1km from the industrial complex closest from the air pollution source were lower than those of 3 and 7km/ 3) Photosynthetic capacity of Styrax japonica at 1km from the air pollution source was lower than those at 3 and 7km.

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A Study on Remediation Method of Diesel-Contaminated Railroad Soil using $TiO_2$-MMT ($TiO_2$-MMT를 이용한 디젤오염 철도토양의 개선방안에 관한 연구)

  • Yang, Young-Min;Huh, Hyun-Sue;Lee, Jae-Young;Lee, Cheul-Kyu;Jeon, Yu-Mi
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.2870-2874
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    • 2011
  • Soil pollution around railroad has been occurred mainly by diesel and lubricant oil, which is difficult to treat due to high carbon number. In this study, we investigated the feasibility of inorganic-inorganic nanohybrid photo-catalyst for the remediation of diesel-contaminated railroad soil. Generally, the $TiO_2$ nanoparticle easily removes organic pollutants due to photo and natural clay of layer structure. Also, montmorillonite (MMT) have an excellent absorption property with organic component. So, we prepared $TiO_2$ pillared MMT nanohybrid photo-catalyst as a chemical oxidant through the integration of theses advantage. As a result, the removal efficiency of diesel was more than 45% at a laboratory-scale test with diesel concentration and the amount of $TiO_2$-MMT. In future, we will improve the removal efficiency of diesel to optimize experimental parameters and apply the field soil The remediation method using photo-catalyst can be used to clean up the railroad soil polluted with high concentration instead of common methods such as soil washing, bioremediation, etc..

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