Phytoremediation on the Heavy Metal Contaminated Soil by Hyperaccumulators in the Greenhouse
Park, Sang-Hean;Choi, Sang-Il;Park, Jong-Bu;Han, Ha-Kyu;Bae, Sei-Dal;Sung, Il-Jong;Park, Eung-Ryeol;
Department of Environmental Engineering, Kwangwoon University;Department of Environmental Engineering, Kwangwoon University;Research Institute of Technology, Hanwha E&C Corp.;Korea Environment Corporation;Department of Environmental Engineering, Kwangwoon University;Department of Environmental Engineering, Kwangwoon University;Department of Environmental Engineering, Kwangwoon University;
3. 김현희, 2003, 포사격장의 중금속 오염도 조사 및 피 (Echinochloa crusgalli var. Frumentacea)와 해바라기 (Helianthus annuus)를 이용한 납의 Phytoextraction에 관한 연구, 지하수토양환경, 8, 30-45.
4. 동화기술, 2009, 수질오염.폐기물.토양오염 공정시험기준.
5. Baker, A.J.M. and Brooks, R.R., 1989, Terrestrial higher plants which hyperaccumulate metallic elements - A review of their distribution, ecology and phytochemistry, Biorecovery, 1, 81-126.
6. Ebbs, S.D., Lasat, M.M., Brady, D.J., Cornish, J., Gorden, R., and Kochian, L.V., 1997, Phytoextraction of cadmium and zinc from a contaminated soil, J. Environ. Qual., 26, 1424-1430.
8. Koopermans, G.F.P.F.A.M., Song, J., Temminghoff, E.J.M., and Japenga, J., 2007, Predicting the phytoextraction duration to remediate heavy metal contaminated soils, Water Air Soil Pollut., 181, 355-371.
9. Kumar, P.B.A.N., Dushenkov, V., Motto, H., and Raskin,, I., 1997, Phytoextraction: The use of plants to remove heavy metals from soils, Environmental Science and Technology, 29(5), 1232-1238.
10. Terry, N., Carlson, C., and Raab, T.K., 1992, Rates of Se volatilization among crop species, J. Environ. quality, 21, 341-344.
11. Wang, W., 1991, Literature review on higher plants for toxicity testing, Water Air Soil Poll., 59, 381-410.