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광산인근 논토양의 카드뮴 존재형태와 쌀의 카드뮴의 함량과의 관계Relationship between Fraction of Cd in Paddy Soils near Closed Mine and Cd in Polished Rice Cultivated on the same Fields

Other Titles
Relationship between Fraction of Cd in Paddy Soils near Closed Mine and Cd in Polished Rice Cultivated on the same Fields
Authors
김원일박병준박상원김진경권오경이종근김정규정구복
Issue Date
2008
Publisher
한국토양비료학회
Keywords
Rice; Cadmium; Fraction; Closed mine
Citation
한국토양비료학회지(Korean Journal of Soil Science and Fertilizer), v.41, no.3, pp.184 - 189
Indexed
KCI
Journal Title
한국토양비료학회지(Korean Journal of Soil Science and Fertilizer)
Volume
41
Number
3
Start Page
184
End Page
189
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/124748
ISSN
0367-6315
Abstract
To assess the relationship between Cd fraction in paddy soils and Cd in polished rice, soils and rice were analyzed at the 3 Cd contaminated paddy fields near closed mines. Major Cd fractions of A field were organically bound (62.6%) and Fe-Mn oxide bound (25.3%) forms. In case of B field, major Cd fractions of B1 field were carbonate bound (46.3%) and Fe-Mn oxide bound (31.6%) form whereas B2 field were residual (54.3%) and carbonate bound (21.8%) form, respectively. It showed a huge difference of Cd fraction each other. 0.1M HCl extractable Cd in soil was positively correlated with Cd in rice. Specially, the ratios of 0.1M HCl extractable Cd against total Cd content in soils were 13.7%, 2.6%, and 0.45% in A, B1, and B2 fields, respectively. These ratio were largely affected with Cd uptake to rice grain. Also, exchangable, Fe-Mn oxide bound, and carbonate bound form, which are partially bioavailable Cd fraction to the plant, were positively correlated with Cd in rice while organically bound and residual form was not correlated. Multiple regression equation was developed with Rice Cd = -0.02861 + 0.07456 FR 1(exchangeable) + 0.00252 FR 2(carbonate bound) + 0.001075 FR 3(Fe Mn oxide bound) - 0.00095 FR 4(organically bound) - 0.00348 FR 5(residual) (R2 = 0.7893***) considering Cd fraction in soils.
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College of Life Sciences and Biotechnology > Division of Environmental Science and Ecological Engineering > 1. Journal Articles

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