• Dispersion Characteristics of Hazardous Elements for the Stream Sediments of Primary Channels in the Namhae-Hwngye area
  • Park, Yaung-Seog;Park, Dae-Woo;Kim, Jong-Kyun;Hong, In-Hee;Lim, Sung-Tae;
  • Dept. of Resource Engineering, Chosun University;Dept. of Resource Engineering, Chosun University;Center for Scientific Instruments, Chosun University;Dept. of Resource Engineering, Chosun University;National Maritime Museum;
  • 남해-화개지역 1차 수계 하상퇴적토의 환경유해원소 분산특성
  • 박영석;박대우;김종균;홍인희;임성태;
  • 조선대학교 자원공학과;조선대학교 자원공학과;조선대학교 공동실험실습관;조선대학교 자원공학과;국립해양유물전시관;
Abstract
Dispersion characteristics and envirounmental impactes of the stream sediments were investigated and geochemical disaster in the Namhae-Hwagye area was predicted. Stream sediments having no possibility of contamination effect and representing drainage basins were collected. Major and hazardous elements concentrations were determined by XRF, ICP-AES and NAA analysis methods. Acid decomposition for the ICP-AES have been used $HClO_4$ and HF with $200^{\circ}C$ heating at 1'st and after that $HClO_4$, HF and HCl with $200^{\circ}C$ heating at 2'nd stage. Hazardous elements concentrations for the stream sediments in the Namhae area were Cu $5.66{\sim}168\;ppm$, Pb $18.0{\sim}40.7\;ppm$, Cr $21.6{\sim}147\;ppm$, Co $4.86{\sim}25.3\;ppm$. Hazardous elements concentrations for the stream sediments in the Hwagye area were Cu $16.4{\sim}41.2\;ppm$, Pb $26.5{\sim}37.5\;ppm$ Cr $79.6{\sim}153\;ppm$, Co $15.7{\sim}29.5\;ppm$. Concentration of Cu and Co in the stream sediments show a negative correlation with $SiO_2$ in all study area. According to E.I.(Enrichment Index) of stream sediments was not enriched in study area. And average E.I. was 0.35 (Namhae) and 0.56 (Hwagye) respectively. The stream sediments were enriched as in order of Pb > Cr > Co > Cu. And the average of Enrichment Factor (E.F.) was 0.46 to 2.84, respectively. E.F. concentration of Cu and Co were nearly similar enrichment characteristic but E.F. concentration of Cr were higher enrichnent characteristic in Namhae than Hwagye area. Pb was highly enriched in all study area but the tolerable level that used to investigate the enrichment degree of hazardous elements, was not exposed to harmful hazardous elements.

남해-화개지역 하상퇴적토 환경유해원소들의 분산특성 및 환경유해성을 알아보고, 지구화학적 재해에 대해 예견하고자 한다. 하상퇴적토는 오염의 우려가 없고, 집수분지를 대표할 수 있는 시료를 채취하였다. XRD, XRF, ICP-AES, NAA를 이용하여 주성분원소 및 환경유해원소를 분석하였다. 산분해법은 1차로 $HClO_4$와 HF를 혼합하여 $200^{\circ}C$에서 분해시킨 후,2차로 $HClO_4$, HF, HCl를 혼합한 후 $200^{\circ}C$에서 분해시켜 이를 1% $HNO_3$ 용액으로 만들었다. 남해지역 환경유해원소의 함량은 Cu $5.66{\sim}168\;ppm$, Pb $18.0{\sim}40.7\;ppm$, Cr $21.6{\sim}147\;ppm$, Co $4.86{\sim}25.3\;ppm$ 범위이고, 화개지역에서는 Cu $16.4{\sim}41.2\;ppm$, Pb $26.5{\sim}37.5\;ppm$, Cr $79.6{\sim}153\;ppm$, Co $15.7{\sim}29.5\;ppm$ 범위를 보였다. 상관 분석에서는 하상퇴적토의 $SiO_2$ 함량이 높아질수록 구리(Cu)와 코발트(Co)의 함량이 감소하는 특징을 보였다. 연구지역의 E.I.는 비부화 되어 있으며, 평균값은 남해지역 0.35와 화개지역 0.56이였다. 조사대상 하상퇴적토들은 납 > 크롬 > 코발트 > 구리 순으로 부화되어 있으며, E.F.의 평균값은 $0.46{\sim}2.84$이다. E.F값은 구리와 코발트에서 거의 비슷한 부화특성을 보이나, 크롬에서는 남해지역보다 화개지역에서 보다 큰 부화특성을 보인다. 납은 연구지역 모두에서 상당히 부화되어 있었지만, 토양 및 퇴적물의 환경오염 허용 한계치(tolerable level)을 이용하여 살펴본 결과에서는 환경유해원소의 오염에 특별히 노출되지 않는 것으로 판단된다.

Keywords: Stream sediments;Hazardous elements;Dispersion;E.I.;E.F.;

Keywords: 하상퇴적토;환경유해원소;분산;

This Article

  • 2007; 12(6): 107-117

    Published on Dec 31, 2007

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