• 제목/요약/키워드: Phytoaccumulation

검색결과 6건 처리시간 0.033초

토양 납 오염에 대한 가로수 식물종의 생리생태적 반응 (Eco-physiological Responses of Roadside Tree Species to Contamination of Soil with Lead)

  • 김한얼;송우람
    • Ecology and Resilient Infrastructure
    • /
    • 제2권3호
    • /
    • pp.237-246
    • /
    • 2015
  • 대한민국은 도시화 과정과 인접 국가에서부터 대기를 통한 유입 등으로 납과 같은 중금속의 토양 오염 문제가 관심을 받고 있다. 이에 가로수 수종으로 많이 쓰이고 있는 자생종 4종을 대상으로 토양 내 납 오염에 대한 엽록소 함량, 항산화 효소, 광합성량, 생물량과 같은 생리-생태적인 반응과 흡수능력을 연구하여 납 오염에 대응하는 가로수로 적합한 수종을 제시하고자 하였다. 연구 대상종인 은행나무, 왕벚나무, 느티나무, 이팝나무는 200 mg Pb/kg 이상의 처리구에서 엽록소 함량, 항산화 효소에서 납 독성에 대한 반응을 보였다. 반면에 생물량이나 광합성량의 경우 고농도 (5,000 mg/kg)를 제외하고는 큰 차이를 나타내지 않았다. 특히 은행나무는 항산화 효소, 광합성 및 생물량에서 고농도에서도 납의 부정적인 영향이 나타내지 않았다. 실제 환경에서 나타날 수 있는 저농도 처리구에서 은행나무와 벚나무의 경우 연구 대상종 중 높은 납 흡수율을 보였다. 이처럼 은행나무와 같이 납에 대한 저항력과 흡수능력을 가진 수종을 선발하여 가로수로 식재하여 도로 주변 납 오염에 대응하는 방안이 필요할 것이다.

Simultaneous uptake of arsenic and lead using Chinese brake ferns (Pteris vittata) with EDTA and electrodics

  • Butcher, David J.;Lim, Jae-Min
    • 분석과학
    • /
    • 제32권1호
    • /
    • pp.1-6
    • /
    • 2019
  • Chinese brake fern (Pteris vittata) has potential for application in the phytoremediation of arsenic introduced by lead arsenate-based pesticides. In this study, Chinese brake ferns were used to extract arsenic, mainly in field and greenhouse experiments, and to assess the performance of simultaneous phytoaccumulation of arsenic and lead from homogenized soil in the greenhouse, with the application of EDTA and electric potential. The ferns have been shown to be effective in accumulating high concentrations of arsenic, and extracting both arsenic and lead from the contaminated soil, with the addition of a chelating agent, EDTA. The maximum increase in lead accumulation in the ferns was 9.2 fold, with a 10 mmol/kg addition of EDTA. In addition, the application of EDTA in combination with electric potential increased the lead accumulation in ferns by 10.6 fold at 5 mmol/kg of EDTA and 40 V (dc), compared to controls. Therefore, under application of EDTA and electric potential, Chinese brake fern is able to extract arsenic and lead simultaneously from soil contaminated by lead arsenate.

Health Risk Assessment through Residents Exposure to Toxic Metals in Soil and Groundwater in the Vicinity of Sanyang Metal Mine

  • Park, Jeong-Hun;Choi, Kyoung-Kyoon
    • 한국환경농학회지
    • /
    • 제31권2호
    • /
    • pp.97-103
    • /
    • 2012
  • BACKGROUND: Metal mines were actively developed in the early twentieth century in Korea; however, most of these mines were closed and abandoned without proper management. Therefore, toxic metal contamination in the vicinity of Korean abandoned metal mines has been reported. A risk assessment for these metals was performed for residents near by abandoned Sanyang metal mine. METHODS AND RESULTS: Soil and groundwater samples were collected from May to October 2007 around the mine. After pretreatment of these samples, metal concentrations were measured and then a risk assessment was performed using the Korean soil-contamination risk assessment guidelines. Cancer risk was the highest from inhalation of Pb-contaminated soil, followed in descending order by As-contaminated soil inhalation and water ingestion. The sum of carcinogenic risks was $3.35{\times}10^{-3}$. The noncarcinogenic risk was observed for inhalation of Hg-contaminated soil (5.71). CONCLUSION: Inhalation of soil in dust was the principal pathway to cause the health risk and most of the risk was attributed to As, Pb,Cd, and Hg contamination.

Risk Assessment for Farmers in the Vicinity of Abandoned Nokdong Mine in South Korea

  • Park, Jeong-Hun;Choi, Kyoung-Kyoon
    • Environmental Engineering Research
    • /
    • 제18권4호
    • /
    • pp.221-227
    • /
    • 2013
  • A risk assessment of environmental media was performed for the inhabitants in the area of the abandoned Nokdong metal mine. Soil, groundwater, and crop samples were collected from September to October 2008 around the mine. After pretreatment of these samples, metal concentrations were measured, and a risk assessment was performed using the Korean soil-contamination risk assessment guidelines. Lead (Pb) and arsenic (As) intake rates were the highest for inhalation of soil dust. The cancer risks from ingestion of As-contaminated groundwater, inhalation of As-, Cd-, and Pb-contaminated soils, and contact of As-contaminated soils exceeded the acceptable risk. The sum of all carcinogenic risks was $9.29{\times}10^{-3}$. The non-carcinogenic risk was highest for ingestion of As-contaminated water (11.0), followed, in descending order, by inhalation of Hg-contaminated soil and ingestion of Pb-contaminated water. Most of the risks were associated with As, Cd, Pb, and Hg contamination, and therefore, these metals were considered to be potential toxic carcinogens and non-carcinogens for humans in this area. In this study, the non-carcinogenic risks of ingestion of contaminated water or crops, as well as those associated with the inhalation of soil dust were observed.

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.

o-DGT를 생체모사 대표물질로 이용한 오염토양에서 phenanthrene의 식물축적 평가 (o-DGT as a Biomimic Surrogate to Assess Phytoaccumulation of Phenanthrene in Contaminated Soils)

  • 최지연;신원식
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제24권6호
    • /
    • pp.16-25
    • /
    • 2019
  • Anthropogenic polycyclic aromatic hydrocarbons (PAHs) are formed by the incomplete combustion of fuels and industrial waste. PAHs can be widely exposed to the environment (water, soil and groundwater). PAHs are potentially toxic, mutagenic and/or carcinogenic. Fundamental studies such as biota uptake (e.g., earthworm and plant) of PAHs are highly needed. It is necessary to develop alternative ways to evaluate bioavailability of PAHs instead of using living organisms because it is time-consuming, difficult to apply in the field, and also exaction method is tedious and time-consuming. In this study, sorption behaviors of phenanthrene were evaluated to predict the fate of PAHs in soils. Moreover, bioaccumulation of PAHs in an artificially contaminated soil was evaluated using pea plant (Pisum sativum) as a bioindicator. A novel passive sampler, organic-diffusive gradient in thin-film (o-DGT) for PAHs was newly synthesized, tested as a biomimic surrogate and compared with plant accumulation. Sorption partitioning coefficient (KP) and sorption capacity (KF) were in the order of natural soil > loess corresponding to the increase in organic carbon content (foc). Biota-to-soil accumulation factor (BSAF) and DGT-to-soil accumulation factor (DSAF) were evaluated. o-DGT uptake was linearly correlated with pea plant uptake of phenanthrene in contaminated soil (R2=0.863). The Tenax TA based o-DGT as a biomimic surrogate can be used for the prediction of pea plant uptake of phenanthrene in contaminated soil.