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목차
무순(Raphanus sativus L.)의 제거능 계산에 의한 뿌리여과법의 우라늄 제거 가능성 평가 = Evaluation of Rhizofiltration for Uranium Removal with Calculation of the Removal Capacity of Raphanus sativus L. / 한이경 ; 이민희 1
ABSTRACT 1
1. 서론 1
2. 실험 방법 2
2.1. 연속반응조 실험 2
2.2. 우라늄 제거능과 제거효율 계산 4
2.3. 흡착등온선을 적용한 무순의 우라늄 제거 특성 규명 5
3. 실험 결과 및 토의 5
3.1. 연속반응조 실험 결과 5
3.2. 흡착등온선을 적용한 무순의 우라늄 제거 특성 규명 7
4. 결론 9
References 9
번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | Antonkiewicz, J. and Jasiewicz, C., 2002, The use of plants accumulating heavy metals for detoxification of chemically polluted soils, J. Polish Agric. Univ., 5, 121-143. | 미소장 |
2 | Baker, A.J.M., McGraht, S.P., Reeves, R.D., and Smith, J.A.C., 1998, Metal hyperaccumulator plants: a review of the ecology and physiology of a biological resource for phytoremedation of metalpolluted soils, In terry N, banuelos GS(eds.) phytoremedation, Ann Arbor Press, Ann arbor, MI. | 미소장 |
3 | Beveridge, T.J. and Murray, R.G.E., 1980, Sites of metal deposition in the cell wall of bacillus subtilis, Int. J. Mycobacteriol., 141, 876-887. | 미소장 |
4 | Chen, H. and Cutright, T., 2001, EDTA and HEDTA effects on Cd, Cr, and Ni uptake by helianthus annuus, Chemosphere, 45, 21-28. | 미소장 |
5 | Cornish, J.E., 1995, Evaluation of in situ phytoremediation of uranium-contaminated soils in Ohio and Montana. Hazardous Management '95 Conference proceeding. | 미소장 |
6 | Removal of Uranium from Water Using Terrestrial Plants ![]() |
미소장 |
7 | Rhizofiltration: the use of plants to remove heavy metals from aqueous streams. ![]() |
미소장 |
8 | Potential for rhizofiltration of uranium using hairy root cultures of Brassica juncea and Chenopodium amaranticolor ![]() |
미소장 |
9 | Freundlich, H., 1906, Adsorption in solution, Phys. Chem. Soci., 40, 1361-1368. | 미소장 |
10 | Vegetative remediation process offers advantages over traditional pump-and-treat technologies ![]() |
미소장 |
11 | A REVIEW ON PHYTOREMEDIATI ON OF HEAVY METALS AND UTILIZATION OF ITS BYPRODUCTS ![]() |
미소장 |
12 | Grenthe I., Fuger, J., Lemire R.J., Muller A.B., Nguyen-Trung C., Wanner H., and Forest, I., 1992, Chemical Thermodynamics of Uranium, Elsevier. | 미소장 |
13 | Application of rhizofiltration using lettuce, chinese cabbage, radish sprouts and buttercup for the remediation of uranium contaminated groundwater | 소장 |
14 | Biotechnology and bioeconomy in China. ![]() |
미소장 |
15 | Jeon, D.Y., 2009, Radionuclides of ground waters in Busan, J. Soil Groundw. Environ., 14(5), 51-61. | 미소장 |
16 | Jeong, S.K., Kim, T.S., and Moon, H.S., 2010, Characteristics of heavy metals uptake by plants: based on plant species, types of heavy metals, and initial metal concentration in soil, J. Soil Groundw. Environ., 15(3), 61-68. | 미소장 |
17 | Aqueous Environmental Geochemistry ![]() |
미소장 |
18 | Langmuir, I., 1918, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Ameri. Chem. Soci., 40, 1361-1403. | 미소장 |
19 | Lee, H.M., Moon K.H., Kim, J.S., Ahn, J.K., and Kim, H.C., 2008, Distribution of some environmental radionuclides in rocks and soils of Guemjeong-Gu area in Busan, J. Petrol. Soci. Korea, 17(3), 179-190. | 미소장 |
20 | Exploitation of plants for the removal of organics in environmental remediation ![]() |
미소장 |
21 | Ministry of Environment (MOE), 2007, Final report for the investigation of naturally occurred radioactive materials in groundwater. | 미소장 |
22 | National Institute of Environmental Research (NIER), 1999, Report for the investigation of naturally occurred radioactive materials in groundwater (I). | 미소장 |
23 | Reeves, R.D. and Baker, A.J.M., 2000, Metal-accumulating plants. In: Raskin, I. (Ed.), phytoremediation of toxic metals: using plants to clean up the environment, John Wiley & Sons, Incorporated, 193-229. | 미소장 |
24 | Phytoremediation of organic and nutrient contaminants. ![]() |
미소장 |
25 | Phytoremediation of Hazardous Wastes: Potential Regulatory Acceptability ![]() |
미소장 |
26 | Organic pollutant accumulation in vegetation. ![]() |
미소장 |
27 | Son, C.M., Lee, S.M., Kim, Y.K., Kim, S.W., and Kim, H.S., 1978, Explanatory Text of the Geological Map of Dongrae Sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources. | 미소장 |
28 | Son, M., Hamm, S.Y., Kim, I.S., Lee, Y.H., Jeong, H., Ryu, C.K., and Song, W.K., 2002, Fracture analysis for evaluation of groundwater flow around the geumjeong mountain, Busan, J. Eng. Geol., 12(3), 305-317. | 미소장 |
29 | Nanometre-size products of uranium bioreduction. ![]() |
미소장 |
30 | Tlustos, P., Pavlikova, D., Szakova, J., Fischeroa, Z., and Balik, J., 2006, Exploitation of fast growing trees in metal remediation, In phytoremediation rhizoremediation, Eds. Martina Mackova, David N. Dowling, and Thomas Macek, 83-102, Springer. | 미소장 |
31 | US EPA, 1999, Phytoremediation resource guide, EPA 542-B-99-003. | 미소장 |
32 | Uranium(VI) adsorption to ferrihydrite: Application of a surface complexation model ![]() |
미소장 |
33 | Willey, N. and Collins, C., 1996, Phytoremediation of soil contaminated with low concentration of radionuclides, Water, Air, Soil Pollut., 88, 167-176. | 미소장 |
34 | Uranium and cesium accumulation in bean (Phaseolus vulgaris L. var. vulgaris) and its potential for uranium rhizofiltration ![]() |
미소장 |
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