• Title/Summary/Keyword: 중금속 흡수

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Growth and Heavy Metal Absorption Capacity of Aster koraiensis Nakai According to Types of Land Use (토지이용 형태별 벌개미취의 생육 및 중금속 흡수능)

  • Ju, Young-Kyu;Kwon, Hyuk-Jun;Cho, Ju-Sung;Shin, So-Lim;Kim, Tae-Sung;Choi, Su-Bin;Lee, Cheol-Hee
    • Korean Journal of Plant Resources
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    • v.24 no.1
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    • pp.48-54
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    • 2011
  • This study was performed to analyze the possibility of using Korean native Aster koraiensis Nakai for phytoremediation at various fields. A. koraiensis was cultivated at paddy, upland and forest soils contaminated with heavy metals. After 8 weeks of cultivation, and growth and its absorbing capacity of heavy metals were analyzed. The results showed that A. koraiensis was grown well even at the soil highly contaminated with heavy metals, which means it has a tolerance to heavy metals. As analysis results of arsenic, cadmium, copper, lead and zinc contents absorbed from various soils contaminated with heavy metals, heavy metal absorbing capacity of A. koraiensis was depending on the heavy metal contents in the soils and soil property. In case of arsenic, cadmium and copper, heavy metal accumulation capacities of Aster koraiensis were much influenced by contents of heavy metals in the soils. Absorbing capacity of plants was increased when heavy metal contents in the soils were high. Lead absorbing capacity was depending more on soil property than lead contents in the soil, and was great at sandy soil of forest. Zinc absorbing capacity was influenced by both soil properties and Zn contents in the soil, was increased at paddy soil contaminated with high concentrations of heavy metals and upland soils. In general, A. koraiensis had a tolerance to heavy metals and showed great absorbing capability of heavy metals. So A. koraiensis can be used as a good landscape material for phytoremediation at various soils contaminated with heavy metals.

Study on the elimination of heavy metal pollutants in the soil by plant (식물을 이용한 토양내의 중금속 오염원 제거에 관한 연구)

  • 강경홍;김인성
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1996.09a
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    • pp.61-76
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    • 1996
  • 본 연구는 하천유역의 중금속을 제거하는데 식물을 활용하기 위해 1994년 7월부터 10월까지 전라북도에 위치한 전주천과 그 주변하천에서 7개 지점을 선정하여 토양층과 물의 Pb, Cu, Zn 및 Fe 등의 함량을 조사하였고 그 주변에 자생하는 고마리, 마름 및 노랑어리연꽃의 중금속 농축량과 부위별 중금속 농축량을 조사하였다. 그리고 재료식물내의 중금속 농축량과 서식지 토양의 중금속 함량과의 관계를 밝히기 위해 재료식물내의 중금속 함유량과 토양의 중금속 함량간의 상관계수를 조사하였다. 실험실 조건하에서 재료식물의 중금속 흡수경향을 조사하기 위해 재료식물 중 고마리를 선정하여 Pb, Cu 및 Zn 등을 여러 농도로 처리한 용액에 고마리의 뿌리부분을 침수하여 재배한 후 그농축량을 측정하였고, 그 결과를 7개 채집지에서 자생한 고마리의 중금속 농축량의 측정치와 비교 분석하였다. 7개 채집지에서 자생한 고마리의 부위별 중금속 농축량은 Pb와 Zn의 경우 줄기<잎<뿌리의 순서로 증가하였고 Cu와 Fe는 잎<줄기<뿌리의 순서로 증가하였으며, 중금별 농축량은 Pb$\leq$Zn의 순서로 증가하였다. 고마리의 배양 실험 결과, 서식지에서 조사된 결과인 잎과 줄기에서 Pb

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Effects of free metal ions and organo-metal complexes on the absorption of lead and cadmium by plants (식물에 의한 납, 카드뮴 흡수 기작에 미치는 자유이온 및 유기산-중금속 복합체의 영향)

  • Lee, Mina;Seo, Byounghwan;Kim, Kwon-Rae
    • Journal of Applied Biological Chemistry
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    • v.64 no.2
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    • pp.159-164
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    • 2021
  • Heavy metals exist in soils in various chemical forms including free metal ions and organo-metal complexes. The ratio of free metal ions has been known to be highly associated with the plant absorption of heavy metals. This study aims to understand the effect of free ions and organo-metal complexes on the absorption of lead (Pb) and cadmium (Cd) by plants. For this, lettuce grown in a hydroponic system for 28 days was consequently grown another 48 hours using Pb and Cd solutions. The ratios of free ion to organo-metal complexes in the solutions were adjusted at 100:0, 90:10, 70:30, 60:40 by four different organic acids (citric, oxalic, acetic, and humic acid). After that, the concentration of Pb and Cd in lettuce were analyzed. The Pb and Cd absorption by lettuce was more relied on the types of organic acids treated and the type of metals rather than the ratio of free metal ions. For example, citric acid increased the Pb absorption while it decreased the Cd absorption by lettuce. There was no significant relationship between free metal ion ratios and both Pb and Cd uptake by lettuce. It could be explained that citric acid, a relatively higher molecular weight organic acid, has higher ion binding capacity, so it forms organo-Pb complex easily due to the higher affinity of Pb on the binding site in comparison with Cd. Consequently, this complexation would assist Pb uptake by lettuce.

연-아연광산 지역 내 복토된 광미장 부지 농작물(벼)의 체내 중금속 오염도

  • 이평구;신영식;최상훈
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2004.09a
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    • pp.168-171
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    • 2004
  • 과거 광미장으로 사용되었던 곳을 복토 후 농경지로 전환한 지역을 대상으로 채취한 벼의 중금속 체내 흡수도를 평가하고자 하였다. 오염된 논에서 채취한 벼 뿌리의 중금속 함량은 배경 뿌리시료에 비교하면, Cd 65배, Pb 24배, Zn 15배, As 8.4배, Ni 3.5배, Cu 2.3배, Mn 2.1배 및 Cr 1.6배가 더 축적되어 있었다. 줄기의 경우, 배경 줄기시료에 비교하여 Pb 10.2배, Cd 5.4배, Zn 4.2배, Wi 1.9배, Cu 1.5 배, Cr 1.3배 높은 것으로 나타났다. 논토양으로부터 뿌리로 흡수되는 중금속 함량은 매우 큰 것으로 나타났으나, 뿌리로부터 줄기로의 체내 흡수도는 급격하게 감소하는 것으로 나타났다.

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Studies on Removal of Heavy Metals in Irrigation Water by Water Hyacinth (부레옥잠(수초(水草)) 을 이용(利用)한 개관수중(漑灌水中) 유해중금속(有害重金屬) 제거연구(除去硏究))

  • So, Kyu-Ho;Kim, Bok-Young
    • Korean Journal of Environmental Agriculture
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    • v.11 no.2
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    • pp.133-139
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    • 1992
  • Removal of heavy metals by water hyacinth, Eichhornia crassipes Solms-Laub, was examined with two heavy metals Cd, Cu under laboratory conditions. Cd in culture solution was reducd to 0.116, 0.873, 2.015, 3.755 and 4,747 mg/L from 1, 2, 3, 4 and 5 mg/L for 24 hrs, after cultivating of water hyacinth respectively And, Cu was reduced to 0.086, 0.600, 2.174, 3.473, and 4.365 mg/L from 1, 2, 3, 4, and 5 mg/L for 24 hrs, after the cultivation, respectively. Cu was removed faster than Cd nd airating cultivation was effected higher than fixing cultivation. Removal effect of heavy metals by water hyacinth was higher in low a heavy metal cocentration than in high concentration

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Effects of Amendments on Heavy Metal Uptake by Leafy, Root, Fruit Vegetables in Alkali Upland Soil (염기성 밭 토양에서 안정화제에 의한 엽채류, 근채류, 과채류 작물들의 중금속 전이 특성)

  • Kim, Min-Suk;Min, Hyun-Gi;Lee, Sang-Hwan;Kim, Jeong-Gyu
    • Ecology and Resilient Infrastructure
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    • v.7 no.1
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    • pp.63-71
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    • 2020
  • Various types of amendments have been studied for heavy metal stabilization in soil. However, researches on the effect of amendments on alkali soil and their effects on the plants at various edible parts are insufficient. The aim of this study was to evaluate the stabilization efficiency of heavy metals and their transfer into edible parts of food crops. Abandoned mine area was selected and 3 types of amendments (lime stone, LS; steel slag, SS; acid mine drainage sludge, AMDS) was applied with 3% (w/w). in field. After 6 month aging, Chinese cabbage (leafy), bok choy (leafy), garlic (root) and red pepper (fruit) were transplanted and cultivated. For chemical assessment, total concentration and bioavailability using Mehlich-3 solution were determined. For biological assessment, fresh weight and heavy metal uptakes were analyzed. It was revealed that AMDS reduced bioavailability most effectively, resulting in the decrease in heavy metal concentration in edible parts of all crops. When explaining the heavy metal uptake of plants, the bioavailability was more appropriate than the total contents of soil heavy metals. Therefore, bioavailability-based further research and management practices should be carried out continuously for the sustainable environment management, safe crop production, and human health risk reduction.

Heavy Metal Pollutions of the Top Soil Plants and Stream Water from the Serpentinite Area Chungnam (충남 사문암 지역 토양 식물체 및 계류의 중금속 오염)

  • 김명희
    • Korean Journal of Environment and Ecology
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    • v.14 no.2
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    • pp.119-126
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    • 2000
  • 충남 사문암 지역인 광천, 홍성, 백동, 대흥 및 유구지역의 토양, 식물체(참억새, 쑥, 리기다소나무) 및 지표수, 갱내수의 중금속 함량을 분석한 결과 사문암 토양의 Ni, Cr 및 Co 원소가 변성암 토양에 비하여 10~13배높았으며 이 원소들이 serpentine factor로 생각된다 사문암 지역간에는 이들원소의 차이가 뚜렷하지 않았다 변성암 토양식물에서보다 사문암 토양 식물에서 Ni, Cr, Co등이 높았다 리기다소나무의 원소 흡수량은 비교적 낮았고 3종 식물에서 대체로 뿌리의 원소 함량이 지상부 함량보다 높았으며 사문암 토양에서는 Ni, Cr, Co, Mo, Sc, As 및 Fe 원소들이 쑥보다 참억새에서 높았다 사문암 토양에서 생육하는 식물체 지상부의 생물학적 흡수계수는 Ni, Cr, Co, Zn, Sc, As 및 Fe 원소는 참억새에 높고Zn은 쑥에서 높았다,. 사문암 토양에서 뿌리로부터 지상부로의 원소 전이는 Ni, Cr, Co, Zn As 및 Fe 원소에 대해 쑥에서 높았고 Mo와 Sc 원소는 리기다소나무에서 높았다. 따라서 사문암 토양에서 참억새가 중금속의 흡수율은 높고 중금속에 대한 내성은 강할 것으로 사료된다 대흥지역에서 광산의 오염이 지표수 및 갱내수의 Ni. Cr, Co, Zn 및 Fe 등의 원소 농도를 높게 하였으며 비오염 계류는 오염계류의 원소 농도를 희석시켰다.

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Studies on the Effects of Irrigation Control and Gypsum on the Cd Uptake by Different Species of Rice Plant (수도품종별 중금속(重金屬) 흡수억제(吸收抑制)에 대한 물관리(管理) 및 석고(石膏)의 효과)

  • Kim, J.O.;Ha, Y.L.;Kim, B.J.
    • Korean Journal of Soil Science and Fertilizer
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    • v.11 no.2
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    • pp.113-118
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    • 1979
  • In the soil treated with irrigation control and gypsum, different species of rice plants, Jin-heung, Aggibare, Tong-il, Mil-yang 23, Noindo, Yugnong-chat, were grown. The content of cadmium, copper and zinc in the brown rice was investigated. Results obtained are as follows : 1) Cadmium Content of brown rice was remarkably reduced under the condition to maintain the reduction than oxidation after ear forming stage, and also the application of gypsum was additional effects to reduce cadmium uptake under reduction condition. Zinc and copper contents in the brown rice was similar to calcium reducing, but their effects of reduction were appeared less than cadmium. 2) The reduced tendency of cadmium uptake under the reduction condition was in the order of Tong-il>Mil-yang23>Aggibare>Yugnong-chal>Noindo>Jin-heung. 3) In the oxidzing condition, Jin-heung uptaked cadmium, copper and zinc more than any other species.

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Sequential Extraction of Trace Elements and Uptake by Pakchoi from Volcanic Soils in Jeju Island (제주 화산회토양의 중금속 연속추출 특성 및 작물 흡수에 미치는 영향)

  • Lim, Han-Cheol;Moon, Kyung-Hwan;Jeon, Seung-Jong;Park, Won-Pyo;Hyun, Hae-Nam
    • Korean Journal of Soil Science and Fertilizer
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    • v.42 no.2
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    • pp.65-69
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    • 2009
  • We studied to compare the fractionation patterns of Ni, Cu, Zn in Jeju volcanic ash soils and to elucidate the uptakes of them by Pakchoi(Brassica campestris var. chinensis). Fractionation patterns of soils by sequential extraction method were different and make to distinguish from various soil types. In Pakchoi, the transfer rates of Ni, Cu, Zn from root to shoot were also different by metal types. There are low corelation between fractional contents in soil and contents in plants of trace elements except for exchangeable Zn. It is needed to develop novel methods for the assessment soil Ni in relation to plant uptake because of poor corelation.

Hyperaccumulation mechanism in plants and the effects of roots on rhizosphere soil chemistry - A critical review (고축적식물의 중금속 흡수기작과 뿌리에 의한 근권 토양의 화학변화 - 총설)

  • Kim, Kwon-Rae;Owens, Gary;Naidu, Ravi;Kim, Kye-Hoon
    • Korean Journal of Soil Science and Fertilizer
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    • v.40 no.4
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    • pp.280-291
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    • 2007
  • Much research has been conducted in the field of phytoremediation since the discovery of the range of plants known as hyperaccumulators. Research has focused simultaneously on elucidating the mechanism of metal(loid) accumulation and development of practical techniques to enhance accumulation efficiency. To date, it is generally understood that there are five specific mechanisms employed by hyperaccumulating plant species that are either not or under utilized by non-hyperaccumulators. These include 1) enhanced metal(loid)s uptake through the root cell, 2) enhanced translocation in plant tissue, 3) detoxification and sequestration, 4) enhanced metal availability in soil:root interface, and 5) active root foraging toward metal(loid) enriched soils. Among these mechanisms, understanding of the plant-root effect on metal(loid) dynamics and subsequent plant uptake is vital to overcome the inherit limitation of phytoremediation caused by low metal(loid) solubility in soils. Plant roots can influence the soil chemistry in the rhizosphere through changes in pH and exudation of organic compounds such as low-molecular-weight organic acids (LMWOAs) which consequently change metal(loid) solubility. The decrease in soil pH by plant release of $H^+$ results in increased metal solubility. Elevated levels of organic compounds in response to high metal soil concentrations by plant exudation may also increases metal concentration in soil solution through formation of organometallic complexes.