• 제목/요약/키워드: Phytostabilization

검색결과 10건 처리시간 0.027초

Fungal Endophytes of Alnus incana ssp. rugosa and Alnus alnobetula ssp. crispa and Their Potential to Tolerate Heavy Metals and to Promote Plant Growth

  • Lalancette, Steve;Lerat, Sylvain;Roy, Sebastien;Beaulieu, Carole
    • Mycobiology
    • /
    • 제47권4호
    • /
    • pp.415-429
    • /
    • 2019
  • Soil contamination by metals is of particular interest, given that their retention times within the profile can be indefinite. Thus, phytostabilization can be viewed as a means of limiting metal toxicity in soils. Due to their ability to grow on contaminated soils, alders have repeatedly been used as key species in phytostabilization efforts. Alder ability to grow on contaminated sites stems, in part, from its association with microbial endophytes. This work emphasizes the fungal endophytes populations associated with Alnus incana ssp. rugosa and Alnus alnobetula ssp. crispa (previously A. viridis ssp. crispa) under a phytostabilization angle. Fungal endophytes were isolated from alder trees that were growing on or near disturbed environments; their tolerances to Cu, Ni, Zn, and As, and acidic pH (4.3, 3, and 2) were subsequently assessed. Cryptosporiopsis spp. and Rhizoscyphus spp. were identified as fungal endophytes of Alnus for the first time. When used as inoculants for alder, some isolates promoted plant growth, while others apparently presented antagonistic relationships with the host plant. This study reports the first step in finding the right fungal endophytic partners for two species of alder used in phytostabilization of metal-contaminated mining sites.

Study for Phytostabilization using Soil Amendment and Aster koraiensis Nakai in Heavy Metal Contaminated Soil of Abandoned Metal Mine

  • Jung, Mun-Ho;Lee, Sang-Hwan;Ji, Won-Hyun;Park, Mi-Jeong;Jung, Kang-Ho
    • 한국토양비료학회지
    • /
    • 제49권5호
    • /
    • pp.627-634
    • /
    • 2016
  • The objectives of this study were to select optimal soil amendments through analysis of heavy metal availability in soil and uptake to Aster koraiensis Nakai for forest rehabilitation of heavy metal contaminated soil of abandoned metal mine. A. koraiensis was cultivated for 6 months at contaminated soil with several soil treatments (bottom ash 1 and 2%, fly ash 1 and 2%, waste lime+oyster 1 and 2%, Acid mine drainage sludge (AMDS) 10 and 20%, compost 3.4%, non-contaminated natural forest soil, and control). The analysis results of heavy metal concentrations in the soil by Mehlich-3 mehthod, growth and heavy metal concentrations of A. koraiensis showed that waste oyster+lime 1% and compost were more effective than the other amendments for phytostabilization. However, it is needed comprehensive review of factors such as on-site condition, slope covering to reduce soil erosion and vegetation introduction from surround forest for revegetation to apply forest rehabilitation.

오염 토양의 phytoremediation (Phytoremediation of Contaminated Soils)

  • Young-Gyun Cho;Sung-Keun Rhee;Sung-Taik Lee
    • 한국토양환경학회지
    • /
    • 제2권1호
    • /
    • pp.3-12
    • /
    • 1997
  • 식물을 이용하여 오염된 토양에 존재하는 유기 및 무기 오염 물질을 제거하는 phytoremediation은 환경 정화를 위한 새로운 기술이다. 독성 중금속, 방사성 핵종 및 독성 유기 오염 물질을 제거하는데 이용될 수 있는 phytoremediation 에는 다음의 세가지 방법이 있다. (1) phytoextraction: 독성 중금속이나 방사성 핵종과 같은 무기 오염 물질을 수화가능한 부분에 축적하는 식물체를 이용하여 정화하는 방법, (2) phytodegradation: 독성 물질을 분해하는 효소를 분비하는 식물체를 이용하거나 효소를 생산해내는 미생물과 밀접한 연관이 있는 식물체를 이용하여 독성 물질을 무독성 물질로 전환하는 방법, 그리고 (3) phytostabilization: 독성 오염 물질을 용존 상태에서 침전 흑은 식물체의 조직이나 주변 토양 matrix에 흡착시켜 안정화시키는 방법이다. 이 기술은 기존의 어떤 처리 방법보다 더 효과적이고 경제적이다.

  • PDF

식물정화기술의 개요와 환경오염 제어에의 응용 현황 (An Overview of Phytoremediation Technology and Its Applications to Environmental Pollution Control)

  • 이재흥
    • KSBB Journal
    • /
    • 제27권5호
    • /
    • pp.281-288
    • /
    • 2012
  • Phytoremediation-the use of plants for the in situ treatment of contaminated soil and water-has recently emerged as an inexpensive and user-friendly alternative to traditional methods of environmental clean-up. The present article outlines the characteristics of phytoremediation based on accumulated research evidence, along with discussions on its advantages and disadvantages. It further reviews various mechanisms involved in the phytoremediation processes: phytoextraction, rhizofiltration, phytostabilization, phytovolatilization and phytodegradation. Along the way, the author summarizes examples of its applications to environmental pollution control. These include wastewater treatment, removal of heavy metals, and hydrocarbons, remediation of recalcitrant contaminants, phytoremediation of radionuclides, and application of transgenic plants for enhanced biodegradation and phytoremediation. The remainder of the article briefly concludes with directions for future research.

돼지풀, 단풍잎돼지풀, 소리쟁이를 이용한 중금속오염토양의 식물복원법(phytoremediation)에 관한 연구 (Evaluation of Ambrosia artemisiifolia var. elatior, Ambrosia trifida, Rumex crispus for phytoremediation of Cu and Cd contaminated soil)

  • 강병화;심상인;이상각;김광호;정일민
    • 한국잡초학회지
    • /
    • 제18권3호
    • /
    • pp.262-267
    • /
    • 1998
  • 본 실험은 환경친화적인 중금속 정화방법의 하나인 식물복원법(phytoremediation)에 가장 적합하다고 생각되는 단풍잎돼지풀, 돼지풀, 소리쟁이를 선발하여, Cu, Cd농도에 따른 생육양상, 흡수범위 및 정화차이능을 구명하여 식물 복원법적용의 타당성을 제안하고자 실시한 결과는 다음과 같다. 중금속처리에 따른 공시초종의 생육반응은 상이하였으며, 특히 Cu, Cd처리에서 단풍잎돼지풀, 돼지풀이 생육이 좋았으며 소리쟁이는 Cd처리에서 생육이 불량하였다. 처리농도에 따라 지상부와 지하부발달은 Cu의 200ppm, Cd의 50ppm까지는 생육저해는 일어나지만 중금속의 흡수량은 공시초종 모두에서 양호하여 식물복원법(phytoremediation)의 가능성을 보여주었다. 특히 환경친화적인 중금속정화방법은 오염원에 따라 초종선택이 중요하며, Cu오염지역에서는 지상부의 축적량은 처리농도가 높아지더라도 변화가 작은 단풍잎돼지풀은 phytoremediation뿐만 아니라 phytostabilization(식물안정화)을 위한 피복식물로서도 가능성을 보였다.

  • PDF

Evaluation of metal contamination and phytoremediation potential of aquatic macrophytes of East Kolkata Wetlands, India

  • Khatun, Amina;Pal, Sandipan;Mukherjee, Aloke Kumar;Samanta, Palas;Mondal, Subinoy;Kole, Debraj;Chandra, Priyanka;Ghosh, Apurba Ratan
    • Environmental Analysis Health and Toxicology
    • /
    • 제31권
    • /
    • pp.21.1-21.7
    • /
    • 2016
  • Objectives The present study analyzes metal contamination in sediment of the East Kolkata Wetlands, a Ramsar site, which is receiving a huge amount of domestic and industrial wastewater from surrounding areas. The subsequent uptake and accumulation of metals in different macrophytes are also examined in regard to their phytoremediation potential. Methods Metals like cadmium (Cd), copper (Cu), manganese (Mn), and lead (Pb) were estimated in sediment, water and different parts of the macrophytes Colocasia esculenta and Scirpus articulatus. Results The concentration of metals in sediment were, from highest to lowest, Mn ($205.0{\pm}65.5mg/kg$)>Cu ($29.9{\pm}10.2mg/kg$)>Pb ($22.7{\pm}10.3mg/kg$)>Cd ($3.7{\pm}2.2mg/kg$). The phytoaccumulation tendency of these metals showed similar trends in both native aquatic macrophyte species. The rate of accumulation of metals in roots was higher than in shoots. There were strong positive correlations (p <0.001) between soil organic carbon (OC) percentage and Mn (r =0.771), and sediment OC percentage and Pb (r=0.832). Cation exchange capacity (CEC) also showed a positive correlation (p <0.001) with Cu (r=0.721), Mn (r=0.713), and Pb (r=0.788), while correlations between sediment OC percentage and Cu (r=0.628), sediment OC percentage and Cd (r=0.559), and CEC and Cd (r=0.625) were significant at the p <0.05 level. Conclusions Bioaccumulation factor and translocation factors of these two plants revealed that S. articulatus was comparatively more efficient for phytoremediation, whereas phytostabilization potential was higher in C. esculenta.

Pre-adaptation to Cu during Plant Tissue Culture Enhances Cu Tolerance and Accumulation in Begonia (Begonia evansiana Andr.)

  • Ahn, Yeh-Jin;Park, Jong-Moon
    • Journal of Ecology and Environment
    • /
    • 제30권3호
    • /
    • pp.271-276
    • /
    • 2007
  • A simple and efficient protocol was developed for culturing Cu-tolerant and Cu-accumulating plants via pre-adaptation to Cu during plant tissue culture. We induced multiple shoots from begonia (Begonia evansiana Andr.) leaf explants on MS medium supplemented with naphtaieneacetic acid and benzyladenine. After 3 months, small plantlets were transferred to MS medium supplemented with $100{\mu}M\;CuCl_2$ for pre-adaptation to Cu and cultured for 5 months. Then, these plantlets were individually planted in pots containing artificial soil. An additional 500 mg of Cu dissolved in 1/4 strength MS solution was applied to each pot during irrigation over the course of 2 months. We planted pre-adapted and control begonias in soil from the II-Kwang Mine, an abandoned Cu mine in Pusan, Korea, to examine their ability to tolerate and accumulate Cu for phytore-mediation. Pre-adapted begonias accumulated $1,200{\mu}g$ Cu/g dry root tissue over the course of 45 days. On the other hand, non-Cu-adapted controls accumulated only $85{\mu}g$ Cu/g dry root tissue. To enhance Cu extraction, chelating agents, ethylenediamine tetraacetic acid (EDTA)-dipotassiun and pyridine-2,6-dicarboxylic acid (PDA), were applied. While the chelating agents did not enhance accumulation of Cu in the roots of control begonias, EDTA application increased the level of Cu in the roots of pre-adapted begonias twofold (to $2,500{\mu}g$ Cu/g dry root tissue). Because pre-adapted begonias accumulated a large amount of Cu, mainly in their roots, they could be used for phytostabilization of Cu-contaminated soils. In addition, as a flowering plant, begonias can be used to create aesthetically pleasing remediation sites.

수경재배에 의한 중금속 (As 및 Cd) 오염토양의 식물상 복원공법 적용 식물종 선별 (Selection of Plant Species for Phytoremediation of Heavy Metal (As and Cd) Contaminated Soil using Hydroponic Culture)

  • 김범준;배범한;김영훈
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제29권1호
    • /
    • pp.28-38
    • /
    • 2024
  • Phytoremediation presents a low-carbon and eco-friendly solution for heavy metal-contaminated soils, which pose great health and environmental risks to humans and ecosystems. A hydroponic culture was used to quantitatively assess the phytoremediation potential of plant species to remediate As or Cd-contaminated soil in field application. This study examined the growth, uptake, and distribution of Cd in the roots and shoots of Phalaris arundinacea and Brassica juncea in hydroponic conditions with Cd concentrations ranging from 0 to 20 mg/L for 10 days. Additionally, Aster koraiensis and Pteris multifida were cultivated in hydroponic conditions containing As concentrations ranging from 0 to 40 mg/L for 10 days. The concentrations of Cd in the above-ground part and root tissues of P. arundinacea and B. juncea reached a maximum of 147.7 and 1926.7 mg/kg-D.W.(Dry Weight), and 351.6 and 11305.5 mg/kg-D.W., respectively. Bioconcentration factor (BCF) for P. arundinacea and B. juncea were 68.9 and 122.3, respectively. Both species exhibited a translocation factor (TF) of less than 0.1, indicating their eligibility for phytostabilization. Aster koraiensis exhibited significant As accumulation of 155.1 and 1306.7 mg/kg D.W. in the above-ground part and root, respectively. However, this accumulation resulted with substantial weight loss and the manifestation of toxic symptoms. P. multifida exhibited higher accumulation of As (345.1 mg/kg-D.W.) in the fronds than in the roots (255.4 mg/kg-D.W.), corresponding to BCF values of 18.6 and 7.6, respectively, and a TF greater than 1.2. A TF value greater than 1.0 indicates that P. multifida is a viable option for phytoextraction.

토양 중 고농도 카드뮴에 노출된 MuS1 형질전환 담배 (Nicotiana tabacum cv. Xanthi)의 생리적 반응 및 카드뮴 축적: 식물학적 오염토양정화를 위한 형질전환 식물 탐색 (Physiological Response and Cadmium Accumulation of MuS1 Transgenic Tobacco Exposed to High Concentration of Cd in Soil: Implication to Phytoremediation of Metal Contaminated Soil)

  • 정윤화;김영남;김권래;김계훈
    • 한국토양비료학회지
    • /
    • 제46권1호
    • /
    • pp.58-64
    • /
    • 2013
  • The objective of this study was to understand the physiological response and cadmium accumulation of MuS1 transgenic tobacco exposed to high concentration of Cd in soil. For this, a pot experiment was carried out in a greenhouse for a month, with two lines of MuS1 transgenic tobaccos (S4 and S6) and non-transgenic tobacco cultivated in the soils spiked at three different Cd concentrations (0, 60 and 180 mg $kg^{-1}$). Both transgenic and non-transgenic tobacco showed visible toxic symptoms such as chlorosis and leaf roll as treated concentration increased. The net photosynthetic rates of MuS1 plants (S4 and S6) exposed at 180 mg $kg^{-1}$ Cd were 6.3 and $7.7{\mu}mol\;m^{-2}s^{-1}$, being higher than those of the non-transgenic plant ($4.8{\mu}mol\;m^{-2}s^{-1}$). Values of stomatal conductance of MuS1 transgenic plants (0.05 and 0.008 mmol $H_2O\;m^{-2}s^{-1}$) were also higher than those of non-transgenic plant (0.03 mmol $H_2O\;m^{-2}s^{-1}$). In addition, fresh and dry weights of MuS1 transgenic plants were heavier than those of non-transgenic plant. Likewise, MuS1 transgenic plants appeared to be better physiological performance than non-transgenic tobacco when exposed at high concentration of Cd in soil. With regard to metal accumulation, MuS1 transgenic tobaccos accumulated more Cd in their roots than non-transgenic tobacco implying that MuS1 transgenic tobacco is suggested to be used for phytostabilization of heavy metals.

아연 폐광산에 식생도입을 위한 유기성 토양 개량제의 처리효과 (Effects of Organic Amendments on Introducing Pioneer Herbaceous Plants in the Abandoned Zinc Mine Soil Revegetation)

  • 김대연;이상환;정진호;김정규
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제11권3호
    • /
    • pp.43-51
    • /
    • 2006
  • 휴 폐광산 토양에 안정적인 식생도입 시 고농도의 중금속에 의한 독성과 열악한 물리화학적 토양조건은 주요 제한 인자가 됨은 주지의 사실이다. 중금속의 안정화를 목적으로 도입되는 식물의 안정적인 활착을 위해서는 중금속 급성 독성의 경감 및 토양의 물리화학적 특성의 개량이 필수적이라 할 수 있다. 본 연구는 쑥과 잔디를 이용하여 중금속 오염 토양의 안정화할 때 토양개량제로 돈분퇴비 ($75{\sim}225$ Mg/ha)와 도시하수슬러지 ($150{\sim}450$ Mg/ha)의 처리효과를 살펴보고자 포트 (pot) 실험을 수행하였다. 광산토양에 개량제를 처리한 모든 처리구에서 대조구에 비해 쑥과 잔디의 초기 생존율 및 생장량이 크게 증가하였고, 퇴비보다는 슬러지 처리구에서 생육개선 효과가 높았다. 중금속의 식물 체내로의 흡수이행에 있어서는 쑥과 잔디 모두 지상부보다는 지하부에 중금속이 축적되는 양상을 보였고, 슬러지 처리 토양에서 재배된 쑥과 잔디의 체내 중금속 농도가 낮은 것으로 나타나 개량제간 중금속의 생물학적 유효도에 미치는 영향이 다름을 확인할 수 있었다. 토양 개량제 처리에 의해 카드뮴, 아연, 구리 모두 생물학적 유효도가 낮은 형태로 이행하는 것으로 나타났다. 토양 중 중금속의 존재형태에 있어 식물재배 전후의 변화를 측정한 결과 재배 후 토양에서 대체적으로 잔류상 형태, 산화물결합 형태, 및 치환성 형태 함량은 고르게 감소하였고, 유기물결합 형태 함량은 증가한 것으로 조사되었다. 특히 아연의 유기물결합 형태의 비율은 쑥의 경우 7.84% 에서 13.58%, 잔디의 경우 7.84% 에서 14.16% 으로 증가하여 중금속에 대한 유효도가 낮아지는 것으로 나타났다. 본 연구를 통해 퇴비, 슬러지 등의 토양개량제 처리가 그 자체로서 토양중 중금속의 안정화 효과가 있음은 물론 식물안정화를 위해 도입되는 식물의 생육 개선에 효과가 있음을 확인할 수 있었다.