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      • KCI등재

        도시 및 산업환경 분진 및 토양중의 중금속 원소들의 분산에 관한 지구화학적 연구

        전효택,최완주,Chon, Hyo-Taek,Choi, Wan-Joo 대한자원환경지질학회 1992 자원환경지질 Vol.25 No.3

        The garden soils, main road dusts, residential road dusts, and playground soils/dusts of Seoul, Geumsan, Onsan, and Taebaek areas were analyzed in order to investigate the level of heavy metal pollution by urbanization and industrialization. The soil pH is in the range of 5.48~8.40 and was generally neutral. The color of soils and dusts is mainly Raw Umber to dark greyish Raw Umber. Some samples from Taebaek city, a coal mining area, showed a deep black color due to contamination by coal dusts. Major minerals of the dusts and soils are quartz, feldspars, and micas, reflecting the composition of the parent rocks. However, pyrite was found as a major mineral in the samples of industrial road dusts of Onsan, a smelting area, and resicential road dusts of Taebaek. Thus, the high level of heavy metals in mining and smelting areas can be explained with the sulfide minerals. The mode of occurences of heavy metals in Seoul, a comprehensive urbanized area, were related to the metallic pollutants and organic materials through observation by scanning eletron microscopy. In main road and residential road dusts of Onsan area, Cd, Zn, and Cu were extremely high. Some industrial road and residential road dusts of Seoul area showed high Cu, Zn, and Pb contents, wereas some garden soils and residential road dusts of Taebaek area were high in As content. In general, the heavy metal contents in dust samples were two to three times higher than those in soil samples. Main road dust samples were the most reflective from the discriminant analysis of multi-element data. Cadmium, Sb, and Se in Onsan area, As in Taebaek area, Pb and Te in Seoul area were most characteristic in discriminating the studied areas. Therefore, Cd in smelting areas, As in coal mining areas, and Pb in metropolitan areas can be suggested as the characteristic elements of each pollution pattern. The dispersion of heavy metal elements in urban areas tends to orignate in main roads and deposit in garden soils through the atmosphere and residential roads. The heavy metal contamination in Seoul is characteristic in areas with high population, factory, road, and traffic decsities. Heavy metal contents are high in the vicinity of smelters in Onsan area and are decayed to background levels from one kilometer away from the smelters.

      • 동해신광산 터널굴착공사와 관련된 지표수 및 지하수의 유동변화에 대한 조사연구 (II)-수리지구화학적 고찰

        전효택,이희근,이종운,이대혁,류동우,오석영 한국지하수토양환경학회 1997 지하수환경 Vol.4 No.1

        화강암과 석회암으로 구성된 동해 터널굴착지 역 주변에 대한 수리지구화학적 연구를 수행한 결과, 채수한 자연수 시료는 그 화학적 특성에 따라 화강암 지역의 물(그룹 1)과 석회암 지역의 물(그룹 2)로 구분 가능하였다. 이러한 구분은 군집분석을 통하여 통계적으로 확인되며, 동일 지점에서 채수된 터널용출수는 채수시기에 따라 각각 그룹 1 및 2에 속하는 것으로 나타났다. 요인분석 결과 그룹 1은 사장석이 카올리나이트로 풍화되는 반응, 그룹 2는 방해석의 용해 반응에 의하여 각각의 화학적 특성이 결정된다. 터널용출수가 시기에 따라 상이한 특징을 보이는 이유는 두 차례의 채수시기 도중에 수행된 화강암 지역의 누수대에 대한 방수작업이 효과적으로 작용하여 지하수 유동체계를 변화시켰기 때문으로 판단된다. 한편 역학적 조사 결과 터널용출수는 다른 자연수 시료에 비하여 대수층의 조암광물과 상호 반응을 더욱 많이 거친 것으로 보인다. 질량평형에 기초한 계산을 통하여 터널용출수에 대한 두 그룹 물의 혼합율 및 물-암석반응이 정량적으로 도출되었으며 이 결과는 통계적 및 열역학적 조사 결과와 잘 일치한다. The hydrogeochemical study on the 15 natural waters was carried out in the vicinity of tunnel excavation site of Donghae largely composed of granite and limestone. The water samples can be classified based on their chemical characteristics into two groups; waters draining in the granitic region(group 1) and the limestone region(group 2). This classification was also confirmed by statistical examination through cluster analysis, and the tunnel seepage waters collected at the same site appear to be included in group 1 and 2 by their sampling period, respectively. According to factor analysis, the waters of group 1 art mainly represented by the weathering of plagioclase to kaolinite and those of group 2 are characterized by the dissolution of calcite. Different properties of the tunnel seepage waters are thought to be resulted from the effective waterproofing processes conducted during the sampling interval to the surface and subsurface leakage zones at the granitic region, which contributed to the change of groundwater flow system. However both the tunnel seepage waters seem to have thermodynamically interacted with rock-forming minerals in their wallrocks. The mixing ratio of the waters from two groups and water-rock interactions are evaluated quantitatively for the tunnel seepage waters through the mass balance approach, and the results are identical with the previous conclusions in this study.

      • KCI등재
      • KCI등재

        그라우팅으로 인한 주변 지하수-토양 환경으로의 중금속 용출가능성 평가

        전효택,전해표,방기문 한국자원공학회 2006 한국자원공학회지 Vol.43 No.2

        Grouting is an injection of appropriate materials under pressure in the area of joint, cavities and pores of the ground. It has been widely used not only to block the groundwater in excavation work but also to reinforce the stiffness of the ground. Recently, the studies of grouting impacts on environmental contamination of ground have been on the increase. The purpose of this study is to estimate the impacts of heavy metals in grouting materials on environment by selecting the grouting operations which have been widely used in Korea. Chromium, Fe, Ni, Cd and Pb were detected in grouting materials, the concentrations of Ni and Cd, however, were negligible. Among the heavy metals, the concentration of Fe was the highest in all grouting materials whereas the highest content of Pb was found in the OPC(Ordinary Portland Cement). In the case of leaching test result on simulated grouting specimens, heavy metals were detected significantly at condition of under pH 4 while Pb and Fe were not leached at under pH 7 and without pH control. As the surface area of specimens increased, amounts of leached heavy metals also were risen. But the concentrations of heavy metals were reached maximum and sustained constant value after quite a few time. According to weathering test, it was shown that heavy metals which had not been leached at normal condition test were leached in test with weathering. From this point, it is apparent that weathering was highly correlated with the leaching of heavy metals in grouting materials. It is evident that the leaching of heavy metals from grouting materials was significant in acidic condition, such as the condition of the abandoned or closed mine areas. 그라우팅은 건설공사에서 지반의 갈라진 틈이나 공동, 공극 등에 적절한 충전재를 압력을 이용하여 주입하는 것으로, 굴착공사 시 누수방지와 불안정한 지반의 보강을 위하여 광범위하게 사용되고 있다. 본 연구에서는 국내에서 널리 이용되고 있는 그라우팅 물질 내 중금속에 의한 주변 토양-지하수에 미치는 오염영향을 평가하고자 하였다. 그라우트 재료 내 포함되어 있는 중금속은 Cr, Fe, Ni, Cd, Pb 등이 있으나 Ni와 Cd는 함량이 극히 작아 용출실험 대상에서 제외하였다. 중금속 중 양적으로는 Fe가 가장 많이 함유되어 있으며, OPC(Ordinary Portland Cement)의 경우는 Pb 함량이 높게 나타났다. 모의 시편에 대한 용출실험결과는 PH<4 인 조건에서 모든 시료중 중금속 용출량이 높았으며, Cr을 제외한 Pb, Fe 등은 PH<7 인 조건과 증류수 용출실험 상태에서는 거의 용출되지 않았다. 그라우팅 시편의 표면적을 달리한 용출시험을 통해 시편의 표면적이 중금속의 초기용출속도에 영향을 미치나 중금속의 총용출량에는 영향을 미치지 못하는 것으로 나타났다. 인공풍화시험을 통하여 용출실험을 수행한 결과 일반 실험조건에서는 용출되지 않던 중금속이 용출되는 것이 확인되었다. 이는 풍화가 그라우팅 재료내 중금속의 용출에 영향을 주는 것으로 판단되며 특히 지반환경 조건이 폐광산 지역과 같이 산성인 곳에서는 그라우트재료에 의한 중금속 오염의 우려가 높다.

      • KCI등재

        경남(慶南) 및 전남(全南) 일부(一部) 납석광상(蠟石鑛床)의 산소(酸素)-황(黃) 동위원소조성(同位元素組成)과 광상성인(鑛床成因)

        전효택,정영욱,김인준,Chon, Hyo Taek,Cheong, Young Wook,Kim, In Joon 대한자원환경지질학회 1991 자원환경지질 Vol.24 No.2

        Oxygen and sulfur isotope composition of pyrophyllite and pyrite from six pyrophyllite deposits in the Yangsan-Milyang areas (the Cheonbulsan, Dumyong, Dongrae, Youkwang, Sungjin and Milyang mines), and five deposits in the Whasoon-Dado-Haenam areas (the Byuksong, Songseok, Dado, Bugock and Nowha mines) were measured. Pyrophyllite ores both from the Yangsan-Milyang areas and the Dado-Haenam areas are composed mainly of high alumina minerals such as pyrophyllite, sericite and kaolinite. Most of altered rocks show diagnostic chacteristics of bleaching effect. Major minerals of the Songseok ore deposit in the Whasoon area are pyrophyllite, and diaspore with minor amounts of kaolinite and quartz. The Byuksong ores from the Whasoon area were composed mainly of andalusite, kaolinite, pyrophyllite and mica with small amounts of chloritoid, quartz and carbonaceous matter. The Byuksong and Songseok ores show metamorphic textures such as porphyroblastic, and pressure solution textures, and have low whiteness values, The ${\delta}^{18}O$ values of pyrophyllite from the Cheonbulsan and Dumyong mines in the Yangsan area, and the Dado and Nowha mines in the Dado-Haenam areas were in the range of 0.23~5.36%,. The relatively low 8 180 values provide conclusive evidence for hydrothermal activity in these deposits. The ${\delta}^{18}O$ values of pvrophvllite from the Songseok mine in the Whasoon area were measured as 6.70-8.13%, and these higher ${\delta}^{18}O$ values suggest that the Songseok ore deposit have been probably subjected to metamorphism. ${\delta}^{34}$S(pyrito) values from the Cheonbulsan, Dumyong, Youkwang, Dongrae, Sungjin and Milyang deposits in the Yangsan-Milyang areas, and the Dado pyrophyllite deposits in the Dado area range from -5.8 to 2.7%, which means that the pyrite sulfur could be of igneous origin. ${\delta}^{34}$S(pyrito) from the Nohwa mine in the Haenam area is, however, measured as -12.4%" implying the contamination of sulfur derived from the sedimentary country rocks. All of the studied high alumina deposits in the Yangsan-Milyang areas and the Dado-Haenam areas were hydrothermal in origin, whereas the Byuksong and Songseok ore deposits in the Whasoon area were probably of metamorphic origin.

      • KCI등재

        함(含)우라늄 흑색(黑色)세일 분포지역(分布地域)에서의 유독성원소(有毒性元素)들의 분산(分散)에 관한 지구화학적(地球化學的) 연구(硏究)

        전효택,정명채,Chon, Hyo-Taek,Jung, Myung-Chae 대한자원환경지질학회 1991 자원환경지질 Vol.24 No.3

        Surficial dispersion patterns of heavy metals and toxic elements (U, Mo, Cu, Zn, Fe, Mn, Co, Cr, V, Ni, Pb, and Cd) were investigated in the Dukpyungri, Goesan area covered with low grade uranium-bearing black shales. Maximum abundance of U in the black shale was 455ppm. Radioactivity was counted at a maximum of 7cps in black shales, and was less than 0.5cps in shales, slates, and oil shales of the control areas. Enrichment of Mo, V, Cu, Zn, Cd, and Pb in black shales is particularly characteristic compared with shales, slates, and oil shales of the control areas, whereas contents of Mn, Cr, Co, and Th in all rock samples tend to be almost similar. Residual top soils (0~15cm depth) over black shales show high contents of Mo, Cu, Zn, Ni, Cd, and V in comparison with the control areas. Contents of trace elements in subsoils (15~30cm depth) were higher about one and half times than those in topsoils. Average contents of Mo, Cu, Pb, Zn, Cd and V in garden soil and playground soil of an elementary school in Dukpyungri, Goesan area, were high about two to fifteen times compared with the control areas. Contents of trace elements in stream sediments were higher from two to eight times than those in residual soils. Sodium, AI, K, V, Cr, and Fe were more enriched in the roots of pine than in the twigs of pine. Contents of Li, AI, V, Ni, Cd, Fe, and Co were higher in the roots of azalea than in the twigs of azalea. Enrichment of P, Ca, and Mg was remarkable in the twigs of both pine and azalea. Biological absorption coefficients for essential elements (Zn, P, Mn, Ca and K)tend to be high, whereas those for the non-essential elements.(Ba, Ti, V, and Mo) and toxic elements(Cr, Co, Pb and Ni) be low. Less mobile elements (Pd, Cd, and Co) tend to show anomalies with higher contrast than more mobile elements(Mo, V, Zn, Cu and Ni) in the area covered with black shales.

      • KCI등재

        지구화학환경에서의 라돈농도분포와 라돈농도의 지배요인(사례연구)

        전효택 대한지질공학회 2000 지질공학 Vol.10 No.2

        기반암별로 구획화된 지역(서울대학교 관악캠퍼스, 경기도 가평, 충북 보은)에서의 사례연구결과, 화강암질 암석의 잔류토양에서 라돈농도가 상대적으로 높은 값을 나타냈다. 이는 기반암에 따른 우라늄의 지구화학적 분포의 차이가 1차적 원인으로 작용했기 때문이라 판단된다. 라돈의 발산율에 영향을 미치는 토양의 함수율과 우라늄-라듐간의 방사는평형도 토양가스 중 라돈농도를 지배하는 2차적 요인임이 실험에 의해 증명되었다. 서울대학교 관악캠퍼스 지역에서 선정한 40개의 실내공간에서 라돈 및 리돈후대핵종농도 분포를 조사한 결과, 지하실에 위치하면서 환기가 불량한 일부 실내공간에서 EPA의 라돈 기준치인 4pCi/L을 초과하는 농도를 나타냈다. 또한, 실내에서의 라돈농도와 비교한 결과, 일반적으로 양의 상관성을 보여, 토양가스가 실내라돈유입의 주 원임이 확인되었다. 단층이 위치한 경주 및 가평지역에서 단층선과의 거리에 따른 라돈농도분포를 조사한 결과, 일부 지역에서 단층구조의 영향으로 인해 라돈의 이동성이 증가하여, 해당 토양의 우라늄함량만으로는 설명할 수 없는 라돈이상치가 나타났다. Three study areas of Kwanak campus(Seoul National University), Gapyung and Boeun were selected and classified according to bedrock types in order to investigate soil-gas radon concentrations. Several soil-gas samples showed relatively high radon concentrations in the residual soils which derived from granite bedrock. It also showed that water content of soil and the degree of radioactivity disequilibrium was a secondary factor governing radon emanation and distribution of radon radioactivity. The results of radon concentrations and working levels for forty rooms in Kwanak campus, Seoul National University, showed that indoor basement rooms under poor ventilation condition can be classified as high radon risk zone having more than EPA guideline(4 pCi/L). Some results of section analysis which was surveyed in the fault zone of Kyungju and Gapyung area confirmed the existence of fault-associated radon anomalies with a meaning of radon risk zone.

      • KCI등재

        폐석탄광 주변 지구화학적 환경의 중금속 오염 평가 - 강릉탄전 임곡천 일대를 중심으로 -

        전효택,김주용,최시영,Chon, Hyo-Taek,Kim, Ju-Yong,Choi, Si-Young 대한자원환경지질학회 1998 자원환경지질 Vol.31 No.6

        The Imgok Creek is located in the Gangreung coal field, which has been known that sulfides are more abundant than other coal fields in Korea, and it has been severly contaminated by acid mine drainage (AMD) discharging from the abandoned coal mines, such as the Youngdong, the Dongduk and the Waryong coal mines. The purposes of this study are to synthetically assess the contamination of natural water, stream sediment and cultivated soils, and to provide the basic data for AMD treatment. Geochemical samples were collected in December, 1996 (dry season) and April, 1997 (after three day's rainfall). TDS of the Youngdong mine water was remarkably higher than those of other mine waters. In the Imgok Creek, concentrations of most elements, except Fe decreased with distance by dilution caused by the inflow of uncontaminated tributaries. From the results of NAMDI and $I_{geo}$ calculation, the Youngdong coal mine was the main contamination source of the study area. Groundwater pollution was not yet confirmed in this study and the paddy and farm land soils were also not yet contaminated by mining activity based on the pollution index ranging from 0.27 to 0.47.

      • KCI등재

        상동 및 울진지역 주석 화강암질암의 지구화학 자료에 대한 다변량해석

        전효택,정영욱,손창일,Chon, Hyo-Taek,Cheong, Young-Wook,Son, Chang-Il 대한자원환경지질학회 1994 자원환경지질 Vol.27 No.3

        Tin mineralizations in South Korea have been found only in the Ulchin and Sangdong areas. They appear to be in close spatial association with the Wangpiri granitoid in the UlChin area, and the Nonggeori and Naedeogri granites in the Sangdong area. However, previous works have revealed that there are considerable differences in geological setting, mineralogical and geochemical compositions among these granitoids concerned. The roles of discriminant and multiple regression analysis have been examed to establish geochemical differences among the tin-granitoids and to identify elements relating to tin mineralizations. The data set used in this study consists of 60 observations with 29 elements which are cited from pre-existing publications. A stepwise discriminant analysis determined the group of variables that differentiate between samples from four training sets; Buncheon, Wangpiri, Nonggeori and Naedeogri granitoids. These granitoids were most effectively discriminated on the basis of major elements FeO, CaO and $P_2O_5$ and also by the trace elements Rb and Zr. Results of the multiple regression analysis shows that the level of Sn in granitoids depends positively on ones of MnO, Rb and FeO and negatively $P_2O_5$. Graphical representation of discriminant scores on sampling locations greatly aid recognition of differences in the geochemical characteristics in terms of spatial distribution of granitoids examed. The application of the discriminant analysis provides a potential means of identifying and comparing geochemical characteristics.

      • 지리정보시스템을 이용한 지하수 오염 평가

        전효택,안홍일 한국지하수토양환경학회 1998 지하수환경 Vol.5 No.3

        이 연구는 오염원이 산재해 있는 농촌지역으로 아산지역을, 그리고 공업단지와 주거지역이 위치한 공단지역으로 구로구지역을 연구대상지역으로 선정하여 공단지역과 농촌지역 지하수의 물리.화학적 특성과 오염 양상을 조사하였다. 또한 지하수의 효율적인 이용과 적절한 관리를 위해 지리정보시스템을 구축하고 이를 이용하여 지하수오염과 잠재점오염원의 공간적인 관련성을 규명하였다. 아산지역 지하수는 Ca-HCO$_3$유형의 지하수이며 SiO$_2$와 HCO$_3$함량비가 높은 특징을 보여 물-암석 반응이 지하수 성분을 지배하는 가장 큰 요인임을 보여준다. 구로구지역 지하수는 Ca-HCO$_3$유형의 지하수이며 Cl, NO$_3$및 SO$_4$등 오염물질이 부화되고 SiO$_2$에 비해 Ca 함량비가 더 높게 나타나는 등 다양한 오염원에 의한 영향을 반영하고있다. 아산지역에서는 37.5%(총 40개 중 15개)의 지하수 시료에서 NO$_3$,SO$_4$및 Zn의 함량이 먹는 물 수질 기준을 초과하는 오염현상이 조사되었으며, 대부분이 NO$_3$의 오염이었다. 축산농가 및 공장에 대해 오염영향범위를 조사하기 위해 버퍼링 분석을 실시한 결과 l00 m 거리에 걸쳐 오염의 영향이 미치고 있어 공장 및 축산농가가 지하수 오염의 직접적인 원인임을 확인하였다. 구로구지역에서는 64.7%(총 51개 중 33개)의 지하수 시료에서 NO$_3$, Cl, SO$_4$, Fe 및 Zn의 함량이 음용수 수질기준을 초과하는 오염현상이 확인되었다. NO$_3$오염은 50 m 이상의 심부지하수에서도 관찰되어 이미 심각한 오염현상이 진행되었음을 보여주었다. Cl 오염은 구로동 지역의 50 m 이하 천부지하수에서 관찰되었으나 구로동의 구로공단지역에서는 먹는 물 수질기준 이하의 낮은 함량을 보였다. 구로동지역은 70%, 고척동지역은 42%, 궁동지역은 14%의 지하수 시료에서 오염물질이 먹는 물 수질기준을 초과하는 오염현상이 조사되었다. In this study two sites were selected to investigate groundwater contamination and spatial relationship between pollution level and its source. One is the Asan area, agricultural district where pollution sources are scattered. The other is the Gurogu area of Seoul city, industrial district where industrial complex and residential areas are located. Groundwater samples collected from these districts were analysis for chemical constituents. The attribute value files of the chemical constituents of groundwater and the spatial layers have been constructed and the pollution properties have been investigated to find out spatial relationships between the groundwater constituents and pollution sources using CIS. Relatively high contents of Si and HCO$_3$ in groundwater from the Asan area reflect the effect of water-rock interaction, whereas high contents of Cl, NO$_3$, SO$_4$and Ca in groundwater from the Gurogu area are due to the pollution of various sources. Pollution over the critical level of Korean Dinking Water Standard has been investigated from 15 sampling sites out of 40 in the Asan area, and 33 sampling sites out of 51 in the Gurogu area. There is pollution of NO$_3$, Cl, Fe, Mn, SO$_4$and Zn in groundwater from the Gurogu area, and that of NO$_3$, SO$_4$and Zn in groundwater from the Asan area. Principal pollution in both areas is NO$_3$contamination. Deep groundwater from the Asan area is not contaminated with NO$_3$except for one site and most of shallow groundwater near the potential point sources such as factory and stock farm is contaminated seriously. Groundwater from the Gurogu area has been already polluted seriously considering the fact of contamination of deep groundwater. This study reports a spatial relationship between the pollution level and pollution source using GIS.

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