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논문 기본 정보

자료유형
학위논문
저자정보

정홍윤 (안동대학교, 안동대학교 대학원)

지도교수
김정진
발행연도
2014
저작권
안동대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (4)

초록· 키워드

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The Janggun mine(longitude 129° 03′38.91″ Latitude 36° 51′31.59″) was operated as an underground mine and significant amount of mine water has been discharged from the minehead. Geology of the Janggun mine area consist of Jangsan formation, Dueumri formation, Janggun Limestone and Dongsugok formation, and Chunyang granite. Soil and stream water in mine area contaminated on heave metal from pollution sources that mine waste and tailings.
The objective of this study is to investigate on heavy metal uptake of plant from tailing soil in abandoned mine. Soil samples were taken in the vicinity of tailings pile of the Janggun mine. Heavy metal concentration of Fe, Cu, Zn, Cd, Al, As and Pb analyzed using Inductively Coupled Plasma and Atomic Absorption Spectroscopy extracted by aqua regia and mineral composition, X-ray diffraction, and SEM analysis were performed for mineralogical characterization. Plant samples(acacia) were decomposed by a mixture of nitric acid, and heavy metal concentration analyzed using Inductively Coupled Plasma and Ion Chromatograph. The concentration of Mg, Fe, Al, Zn, Mn, As, and SO4 are high in mine and leachate water.
The soil samples from upper part of tailing dump are composed mainly of quartz, albite, chlorite and illite, and minor of gypsum, hematite. Quartz, illite, chlorite are main constituent and small amount of gypsum and pyrite in the top of tailings pile soil. Soil samples are contaminated by Fe, Cu, Zn, Cd, As and etc. Concentrations of Fe, Al, Zn, Pb, Cu and As are high in plant samples(acacia), and bark tend to be higher than sapwood and heart wood.

목차

1. 서 론 1
2. 연구지역현황 6
2. 1. 지형 및 수계 6
2. 2. 광산 주변 지질 및 광상 6
2. 3. 광산 현황 7
3. 연구방법 14
3. 1. 시료채취 14
3. 2. 분석방법 19
3. 3. 분석기기 22
4. 연구 결과 25
4. 1. 중금속분석 25
4. 2. 광물분석 42
4. 3. 흡수비분석 55
5. 결 론 57
참 고 문 헌 59
Abstract 62
감사의 글 64

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