Influence of Fly Ash Application on Content of Heavy Metal in the Soil I. Content Change by the Application Rate

석탄회(石炭灰) 시용(施用)이 토양중(土壤中) 중금속함량(重金屬含量)에 미치는 영향(影響) I. 시용량(施用量)에 따른 함량변화(含量變化)

  • Kim, Bok-Young (Agricultural Science Institute, RDA) ;
  • Lim, Sun-Uk (College of Agriculture and Life Science, Seoul National University) ;
  • Park, Jong-Hyun (Research Center, Korea Electric Power Corporation)
  • Published : 1994.06.30

Abstract

This study was conducted to investigate the influence of treatment of fly ash on heavy metal contents in the arable soils. Rice was cultivated on the two types of paddy field(clay loam and sandy loam soil) with 0, 4, 8, 12t/10a of anthracite fly ash and bituminous coal fly ash, respectively. And soybean was cultivated on the same types of upland field with those of 0, 3, 6, 9t/10a, respectively. At the harvest time, the heavy metal contents in surface and subsoil were investigated. The results were summarized as follows : 1. Anthracite fly ash. 1) In the paddy field of clay loam, the contents of Cu and Zn in the surface soil and Cd and Ni in the subsoil were increased with the increase of the amount of fly ash applied, but the others didn't show that tendency. 2) In the paddy field of sandy loam, only the content of Fe was increased in the surface and subsoils. 3) In the case of upland soil, the concentration of Ni and Cr in the surface soil and Cd in the subsoil were increased in the clay loam soil, and those of Cr in the surface soil and Pb in the subsoil were increased in the sandy loam soil. 2. Bituminous coal fly ash 1) In the paddy field of clay loam, the contents of Cu and Zn in the subsoil were increased with increase of the amount of fly ash applied, but in the case of sandy loam, those of Pb and Ni in the surface soil were increased. 2) In the upland soil of clay loam, the concentration of Ni in the surface soil and Pb in the subsoil were increased. 3) In case of upland soil of sandy loam, the contents of Cr and Fe were increased in the surface and subsoil, respectively, but those of Cu and Mn were increased in the both of the surface and subsoil.

석탄회(石炭灰)인 무연탄회(無煙炭灰)와 유연탄회(有煙炭灰)를 논토양(土壤)의 식양토(埴壤土)와 사양토(砂壤土)에 0, 4, 8, 12톤/10a 시용(施用)하였고 밭 토양(土壤)의 식양토(埴壤土)와 사양토(砂壤土)에 0, 3, 6, 9톤/10a를 시용(施用)하여 벼와 콩을 재배(栽培)한 후에 수확기(收穫期)에 표토(表土)와 심토(深土)에서 중금속(重金屬)인 Cd, Cu, Pb, Zn, Ni, Cr, Fe, Mn함량(含量)을 조사(調査)한 결과(結果)는 다음과 같다. 1. 무연탄회(無煙炭灰) 가. 논토양(土壤) 식양토(埴壤土)에서 Cu와 Zn은 표토(表土)에서, Cd와 Ni은 심토(深土)에서 석탄회(石炭灰) 시용량(施用量) 증가(增加)에 따라서 증가(增加)되었으나 그외 성분(成分)은 증가(增加)되는 경향이 없었고. 나. 사양토(砂壤土)에서는 Fe 만이 표토(表土), 심토(深土) 모두에서 증가(增加)되었다. 다. 밭토양(土壤) 식양토(埴壤土)에서는 Ni, Cr은 표토(表土)에서, Cd는 심토(深土)에서 증가(增加)되었고. 라. 사양토(砂壤土)에서는 표토(表土)에서 Cr, 심토(深土)에서는 Pb만이 증가(增加)되었다. 2. 유연탄회(有煙炭灰) 가. 논토양(土壤) 식양토(埴壤土)에서는 심토(深土)에서 Cu, Zn만이 석탄회(石炭灰) 시용량(施用量) 증가(增加)에 따라 증가(增加)되는 경향이었고. 나. 사양토(砂壤土)에서는 표토(表土)에서 Pb 및 Ni만이 증가(增加)되는 경향이 있었다. 다. 밭토양(土壤) 식양토(埴壤土)에서는 Ni, Fe는 표토(表土)에서, Pb는 심토(深土)에서 증가(增加)되는 경향이었고. 라. 사양토(砂壤土)에서는 Cr은 표토(表土)에서, Fe는 심토(深土)에서 Cu, Mn는 표토(表土), 심토(深土)에서 증가(增加)되는 경향이었다. 3. 논과 밭 토양(土壤)에서 대부분의 성분(成分)은 일정한 경향이 없었고 일부성분이 석탄회(石炭灰) 시용량(施用量) 증가(增加)에 따라서 증가(增加)되었으나 우리나라 토양(土壤)의 자연함량평균치(自然含量平均値) 또는 자연함량평균치(自然合量平均値)+(표준편차(標準偏差)와 유사(類似)하였다.

Keywords