• 제목/요약/키워드: sedimentary unit

검색결과 88건 처리시간 0.022초

동해 울릉분지의 사면안정성 및 쇄설류 퇴적체의 발달 (Slope Stability and Development of Debris Flow Deposit in the Ulleung Basin, East Sea)

  • 이선종;이정민;유동근;이고은;박수철
    • 자원환경지질
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    • 제50권2호
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    • pp.129-143
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    • 2017
  • 동해 울릉분지 남서부의 천부퇴적층은 대부분 사면사태와 쇄설류 퇴적체로 구성되어 있으며 주로 사면붕괴에 의해 야기된다. 따라서 쇄설류 퇴적체에 대한 연구는 지질재해 및 해저면의 안정성을 연구하는 측면에서 중요한 의미를 갖는다. 본 논문에서는 다중빔 음향측심자료를 이용하여 울릉분지의 흐름집적도 및 사면붕괴 취약성도를 작성하였다. 또한, 탄성파 탐사자료를 활용하여 동해 울릉분지의 최상부층에 존재하는 쇄설류 퇴적체의 분포 및 특성을 연구하였다. 사면붕괴 취약성도는 사면붕괴를 야기하는 각 요소별(경사, 경사방향, 곡률 그리고 수류력지수) 빈도비로 계산되었다. 이러한 결과는 동해 울릉분지의 남쪽과 서쪽 대륙사면에서 사면붕괴가 발생할 확률이 높은 것을 지시해준다. 사면붕괴로 야기되는 퇴적체의 흐름(쇄설류)은 사면기저부를 거쳐 울릉분지의 북서쪽 및 북쪽지역으로 수렴하고 있음을 보여준다. 탄성파 자료 분석에 의하면 연구지역의 최상부층에 분포하는 쇄설류 퇴적체는 총 4개의 퇴적단위로 구분된다. 이러한 퇴적단위의 분포는 흐름집적도와 사면붕괴 취약성도와 연계되어 발달하고 있는 것으로 보인다.

제주도 차귀도 서북쪽 해역 내 퇴적 환경 및 퇴적물 조사 (Survey of Sedimentary Environment and Sediment at the West-Northern Site of Chagwi-do nearby Jeju Island)

  • 김한수;현종우;김창수;김정록;조일형
    • 한국해양환경ㆍ에너지학회지
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    • 제19권2호
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    • pp.137-143
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    • 2016
  • 10 MW급 부유식 파력-해상풍력 복합발전 플랫폼의 석션 매립 앵커 시스템 설계를 위하여 제주도 차귀도 서북쪽 인근해역에서 퇴적 환경 및 퇴적물 성분 조사를 수행하였다. Chirp III을 이용하여 획득한 탄성파 단면도를 Chough et al.[2002]의 분류 방법에 따라 음향상 분류를 수행하였다. 그 결과, 조사 해역내의 중앙 및 서북부 지역에서는 주로 편평한 해저면 아래 두께 5~15 m의 내부 반사층이 존재하는 Type I-3으로 확인되었다. 반면 동남부 지역에서는 표층 반사 신호가 상대적으로 큰 Type I-1, I-2 그리고 III-1로 확인되었다. 또한 8개의 대표 정점에서 채취한 시료에 대하여 5종류의 물리적 시험(단위중량, 함수비, 입도분석, 액성 및 소성 한계, 비중)을 수행한 결과 조사 해역 내에는 모래(SP)와 실트가 섞인 모래(SM) 그리고 SP-SM이 혼합된 퇴적물이 존재함을 확인하였다.

페루 중부 오욘 다중금속 광화작용에 대한 조사보고 (A Survey Report on the Polymetallic Mineralization in the Oyon Mineralized District, Central Peru)

  • 이재호;김인준;남형태
    • 자원환경지질
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    • 제50권1호
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    • pp.73-83
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    • 2017
  • 조사광산들은 페루 중부 오욘지역 다중금속 광화대내 다양한 형태로 부존하고 있다. Iscaycruz Zn-Cu-Pb 광산은 다금속 교대 및 스카른 광상으로, 상부에 백악기 퇴적물이 놓여있는 이토질의 쥐라기 퇴적물로 형성된 퇴적암 층군내에 배태한다. 이 층군내 화성암의 관입은 다금속 광화작용을 발생시켰다. Raura Pb-Zn-Cu 광산은 백악기 마차이(Machay) 석회암층이 퇴적되어 있으며, 섬록반암이 관입과 연관된 암맥들에 의해 광화작용이 발달한다. 여러 개의 광체가 발달하고 있으며, 그 중 카투보(Catuvo)광체는 Pb-Zn 광물이 우세하게, 니나코차(Ninacoha)광체는 Ag가 풍부한 방연석이 산출된다. 에스페란자(Esperanza)광체와 레스토라도라(Restauradora) Cu-Ag 광체는 맥상으로 수많은 소규모의 구조에 의해 광화작용이 규제되고 있다. Huaron 광산은 Ag, Pb, Zn Cu 광화작용에 의해 형성된 열수다중금속광상으로, Huaron 배사구조내에 주로 위치하는 몬조나이트 암맥의 관입과 관련된 구조내에서 발달한다. 광화작용은 주요 단층계에 평행한 맥상으로, 역암과 기타 적합한 층서면의 탄산염부분과 관련된 "manto"로 알려진 교대광체로, 그리고 맥의 교차점에서 몬조나이트 관입체내 광염상으로 나타난다.

밭 경지정리(耕地整理) 적합지역(適合地域) 선정기준(選定基準) 시안(試案) (Tentative Suitability Criteria for the Consolidation of Cultivated Upland in Korea)

  • 정연태;손일수;윤을수;손연규;노영팔
    • 한국토양비료학회지
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    • 제29권2호
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    • pp.81-85
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    • 1996
  • 1. 밭 토양의 개별특성(個別特性)인 지형조건(地形條件)과 경사도(傾斜度), 유효토심(有效土深) 및 밭 토양의 집단특성(集團特性)인 규모(規模)(면적), 분포토양의 복합도(複合度)(soil complexity), 작도단위(作圖單位)(군(群))의 분산도(分散度)(mapping unit separation), 사업 예정지역의 장폭비(長幅比)(W/L ratio) 등을 연역적(演繹的)으로 계수화(係數化)하여, 적성등급(適性等級)의 일종으로 볼 수 있는 밭 토양 경지정리(耕地整理) 대상지역(對象地域) 선정기준(選定基準)을 제안하였다. 2. 본 기준을 표본지역(標本地域)인 화강암지대(花崗岩地帶) 전작지역(田作地域)과 퇴적암지대(堆積岩地帶) 답작지역(畓作地域)의 밭 토양에 적용하여 본 결과, 지역특성을 객관적으로 차등화(差等化)하므로서 상호비교가 용이하였다. 3. 밭 토양 경지정리(耕地整理) "매우 적합지(適合地)"는 하성평원지(河成平垣地) 전작지(田作地)이거나 밭 토양이 집단적으로 분포된 저구릉지(低丘陵地)로서 분포토양이 단순하고 작도단위당(作圖單位當) 면적도 넓은 지역이었다. 한편, "부적지(不適地)"는 좁고 긴 곡간(谷間)으로서 곡저부(谷底部)(valley bottom)가 논으로 되어있어 작도단위(作圖單位)가 분산(分散)된 지역이었다.

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경상남북도 지하수 중 자연방사성물질 우라늄과 라돈의 산출특징과 함량분포에 대한 수리지화학적 연구 (Hydrogeochemical Characteristics, Occurrence, and Distribution of Natural Radioactive Materials (Uranium and Radon) in Groundwater of Gyeongnam and Gyeongbuk Provinces)

  • 조병욱;추창오;윤욱;이병대;황재홍;김문수
    • 지질공학
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    • 제24권4호
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    • pp.551-574
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    • 2014
  • 중생대 경상누층군(Gyeonsang Super Group)의 백악기 퇴적암과 화성암류가 분포하는 경상남북도 지역의 201개 지하수공을 대상으로 자연방사성물질인 우라늄과 라돈의 함량특징과 수리지질학적 관련성을 규명하였다. 이를 위하여 요인분석을 통하여 방사성물질과 주요 수질성분과의 상관성을 해석하였으며, 또한 이들의 함량분포와 지질을 고려하여 자연방사성물질의 함량분포도를 작성하였다. 경상남북도지역의 지하수는 대부분 Ca-Na-$HCO_3$가 우세한 유형을 보여 전형적인 칼슘-나트륨-중탄산형의 수리화학적 특징을 보인다. 우라늄의 함량이 미국 EPA의 MCL $30{\mu}g/L$를 넘는 지점은 1개소, 라돈함량이 미국 EPA의 AMCL 4,000 pCi/L를 넘는 지점은 3개소였으며, 전알파의 함량이 15 pCi/L 또는 라듐함량이 5 pCi/L를 넘는 지점은 없었다. 우라늄의 함량범위는 $0.02{\sim}53.7{\mu}g/L$, 평균 $1.56{\mu}g/L$, 표준편차 $4.3{\mu}g/L$이고, 중앙값은 $0.47{\mu}g/L$로서 매우 낮다. 우라늄의 평균치는 신동층군 > 중생대 화강암 > 하양층군 > 유천층군 > 신생대 제3기 퇴적암의 순으로 높다. 전체지역의 라돈의 함량범위는 2~8,740 pCi/L, 평균 754, 중앙값 510, 표준편차는 907 pCi/L이다. 라돈의 평균치는 중생대 화강암 > 유천층군 > 신생대 제3기퇴적암 > 하양층군 > 신동층군의 순으로 높다. 경상남북도의 주요 지질단위를 구분하여 요인분석을 실시한 결과, 우라늄과 라돈의 상관성은 매우 낮았으나, 우라늄과 라돈은 일부 중요 수질항목과 높은 상관관계를 보인다. 요인분석 결과에 의하면 특정한 요인이 자연방사성원소의 거동특성에 크게 영향을 주지 않으므로 이들은 다소 독립적인 거동특성을 하는 것으로 볼 수 있다. 광역적인 방사상물질 연구에서는 행정구역단위 외에도 주요 지질별로 구분하여 방사성원소의 함유특징을 해석할 필요가 있다.

포항(浦項) 및 장기분지(盆地)에 대한 고지자기(古地磁氣), 층서(層序) 및 구조연구(構造硏究); 화산암류(火山岩類)의 K-Ar 연대(年代) (Paleomagnetism, Stratigraphy and Geologic Structure of the Tertiary Pohang and Changgi Basins; K-Ar Ages for the Volcanic Rocks)

  • 이현구;문희수;민경덕;김인수;윤혜수;이타야 테츠마루
    • 자원환경지질
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    • 제25권3호
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    • pp.337-349
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    • 1992
  • The Tertiary basins in Korea have widely been studied by numerous researchers producing individual results in sedimentology, paleontology, stratigraphy, volcanic petrology and structural geology, but interdisciplinary studies, inter-basin analysis and basin-forming process have not been carried out yet. Major work of this study is to elucidate evidences obtained from different parts of a basin as well as different Tertiary basins (Pohang, Changgi, Eoil, Haseo and Ulsan basins) in order to build up the correlation between the basins, and an overall picture of the basin architecture and evolution in Korea. According to the paleontologic evidences the geologic age of the Pohang marine basin is dated to be late Lower Miocence to Middle Miocene, whereas other non-marine basins are older as being either Early Miocene or Oligocene(Lee, 1975, 1978: Bong, 1984: Chun, 1982: Choi et al., 1984: Yun et al., 1990: Yoon, 1982). However, detailed ages of the Tertiary sediments, and their correlations in a basin and between basins are still controversial, since the basins are separated from each other, sedimentary sequence is disturbed and intruded by voncanic rocks, and non-marine sediments are not fossiliferous to be correlated. Therefore, in this work radiometric, magnetostratigraphic, and biostratigraphic data was integrated for the refinement of chronostratigraphy and synopsis of stratigraphy of Tertiary basins of Korea. A total of 21 samples including 10 basaltic, 2 porphyritic, and 9 andesitic rocks from 4 basins were collected for the K-Ar dating of whole rock method. The obtained age can be grouped as follows: $14.8{\pm}0.4{\sim}15.2{\pm}0.4Ma$, $19.9{\pm}0.5{\sim}22.1{\pm}0.7Ma$, $18.0{\pm}1.1{\sim}20.4+0.5Ma$, and $14.6{\pm}0.7{\sim}21.1{\pm}0.5Ma$. Stratigraphically they mostly fall into the range of Lower Miocene to Mid Miocene. The oldest volcanic rock recorded is a basalt (911213-6) with the age of $22.05{\pm}0.67Ma$ near Sangjeong-ri in the Changgi (or Janggi) basin and presumed to be formed in the Early Miocene, when Changgi Conglomerate began to deposit. The youngest one (911214-9) is a basalt of $14.64{\pm}0.66Ma$ in the Haseo basin. This means the intrusive and extrusive rocks are not a product of sudden voncanic activity of short duration as previously accepted but of successive processes lasting relatively long period of 8 or 9 Ma. The radiometric age of the volcanic rocks is not randomly distributed but varies systematically with basins and localities. It becomes generlly younger to the south, namely from the Changgi basin to the Haseo basin. The rocks in the Changgi basin are dated to be from $19.92{\pm}0.47$ to $22.05{\pm}0.67Ma$. With exception of only one locality in the Geumgwangdong they all formed before 20 Ma B.P. The Eoil basalt by Tateiwa in the Eoil basin are dated to be from $20.44{\pm}0.47$ to $18.35{\pm}0.62Ma$ and they are younger than those in the Changgi basin by 2~4 Ma. Specifically, basaltic rocks in the sedimentary and voncanic sequences of the Eoil basin can be well compared to the sequence of associated sedimentary rocks. Generally they become younger to the stratigraphically upper part. Among the basin, the Haseo basin is characterized by the youngest volcanic rocks. The basalt (911214-7) which crops out in Jeongja-ri, Gangdong-myon, Ulsan-gun is $16.22{\pm}0.75Ma$ and the other one (911214-9) in coastal area, Jujon-dong, Ulsan is $14.64{\pm}0.66Ma$ old. The radiometric data are positively collaborated with the results of paleomagnetic study, pull-apart basin model and East Sea spreading theory. Especially, the successively changing age of Eoil basalts are in accordance with successively changing degree of rotation. In detail, following results are discussed. Firstly, the porphyritic rocks previously known as Cretaceous basement (911213-2, 911214-1) show the age of $43.73{\pm}1.05$$49.58{\pm}1.13Ma$(Eocene) confirms the results of Jin et al. (1988). This means sequential volcanic activity from Cretaceous up to Lower Tertiary. Secondly, intrusive andesitic rocks in the Pohang basin, which are dated to be $21.8{\pm}2.8Ma$ (Jin et al., 1988) are found out to be 15 Ma old in coincindence with the age of host strata of 16.5 Ma. Thirdly, The Quaternary basalt (911213-5 and 911213-6) of Tateiwa(1924) is not homogeneous regarding formation age and petrological characteristics. The basalt in the Changgi basin show the age of $19.92{\pm}0.47$ and $22.05{\pm}0.67$ (Miocene). The basalt (911213-8) in Sangjond-ri, which intruded Nultaeri Trachytic Tuff is dated to be $20.55{\pm}0.50Ma$, which means Changgi Group is older than this age. The Yeonil Basalt, which Tateiwa described as Quaternary one shows different age ranging from Lower Miocene to Upper Miocene(cf. Jin et al., 1988: sample no. 93-33: $10.20{\pm}0.30Ma$). Therefore, the Yeonil Quarterary basalt should be revised and divided into different geologic epochs. Fourthly, Yeonil basalt of Tateiwa (1926) in the Eoil basin is correlated to the Yeonil basalt in the Changgi basin. Yoon (1989) intergrated both basalts as Eoil basaltic andesitic volcanic rocks or Eoil basalt (Yoon et al., 1991), and placed uppermost unit of the Changgi Group. As mentioned above the so-called Quarternary basalt in the Eoil basin are not extruded or intruaed simultaneously, but differentiatedly (14 Ma~25 Ma) so that they can not be classified as one unit. Fifthly, the Yongdong-ri formation of the Pomgogri Group is intruded by the Eoil basalt (911214-3) of 18.35~0.62 Ma age. Therefore, the deposition of the Pomgogri Group is completed before this age. Referring petrological characteristics, occurences, paleomagnetic data, and relationship to other Eoil basalts, it is most provable that this basalt is younger than two others. That means the Pomgogri Group is underlain by the Changgi Group. Sixthly, mineral composition of the basalts and andesitic rocks from the 4 basins show different ground mass and phenocryst. In volcanic rocks in the Pohang basin, phenocrysts are pyroxene and a small amount of biotite. Those of the Changgi basin is predominant by Labradorite, in the Eoil by bytownite-anorthite and a small amount pyroxene.

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The effect of hydrated lime on the petrography and strength characteristics of Illite clay

  • Rastegarnia, Ahmad;Alizadeh, Seyed Mehdi Seyed;Esfahani, Mohammad Khaleghi;Amini, Omid;Utyuzh, Anatolij Sergeevich
    • Geomechanics and Engineering
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    • 제22권2호
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    • pp.143-152
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    • 2020
  • In this research, soil samples of the Kerman sedimentary basin, Iran, were investigated through laboratory tests such as petrography (Scanning Electron Microscopy (SEM), X-Ray Fluorescence Spectroscopy (XRF) and X-Ray Diffraction (XRD)), physical and mechanical characteristics tests. The soil in this area is dominantly CL. The petrography results showed that the dominant clay mineral is Illite. This soil has made some problems in the earth dams due to the low shear strength. In this study, a set of samples were prepared by adding different amounts of lime. Next, the petrography and strength tests at the optimum moisture content were performed. The results of SEM analysis showed substantial changes in the soil structure after the addition of lime. The primary structure was porous and granular that was changed to a uniform and solid after the lime was added. According to XRD results, dominant mineral in none stabilized soil and stabilized soil are Illite and calcite, respectively. The pozzolanic reaction resulted in the reduction of clay minerals in the stabilized samples and calcite was known as the soil hardener material that led to an increase in soil strength. An increase in the hydrated lime leads to a decrease in their maximum dry unit weight and an increase in their optimum moisture content. Furthermore, increasing the hydrated lime content enhanced the Unconfined Compressive Strength (UCS) and soil's optimum moisture. An increase in the strength is significantly affected by the curing time and hydrated lime contents, as the maximum compressive strength is achieved at 7% hydrated lime. Moreover, the maximum increase in the California Bearing Ratio (CBR) achieved in clay soils mixed with 8% hydrated lime.

Saudi Arabia 북서부의 지하수조사 (Groundwater Investigation in Northwestern Part of Saudi Arabia)

  • 한정상;정수웅
    • 물과 미래
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    • 제8권2호
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    • pp.30-40
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    • 1975
  • Hydrogeological survey and geophysical prospecting have been carried out in Saudi Arabia for the purpose of finding groundwater in the soil and rock at the request of General trading company in Jeddah, Saudi Arabia. The surveyed area is located on $38^{\circ}-39^{\circ}$ 30' in longitude and $26^{\circ}-26^{\circ}$ 30' in latitude. The topography of this area is dominated by northwest southeast mountain range composed mostly of precambrian rocks and basalt of tertiary period. Geology is mainly composed of greenstone, granite, andesite, diorite rhyolite of pre-cambrian era and sandstone of cambrian period which are underlained by basalt and andesite of tertiary period and alluvium of quaternary unconformably. The instruments used in this investigation are TR-18B2 radioactivity unit which isjapanese patented and A.C. Terrameter, a resistivity meter manufactured by ABEM of Stockholm, Sweden. Radioactivity method has been conducted along the Alula-Khaybar road, totally 164Km by the car-borne. As a result of the above survey 16 places have been selected and these anomalies show 1.2N-1.6N compared to background of each area in intensity with width of 10-50m. Resistivity vertical profiling which made use of Schlumberger configuration method has been made over selected areas by radioactivity method to provide hydrogeological information for a water resources survey. The result of resistivity shows that good aquifers are located in the western part of surveyed area where sedimentary rock is distributed. The strata showing 10-50, ${\Omega}-m$ in resistivity are thought to be waterbearing layer. The variations in aquifer resistivity found, are thought to be due to verying clay content, which could be related to aquifer yield. It has proved impossible to detect small salinity variation in the buried aquifer by geophysics. As a result of resistivity prospecting 10 places are recommended to be drilled at the anomalies as shown attached map. yields from the proposed holes have been estimated approximately from $20m^3$ to $200m^3$ per day. Prior to drilling for groundwater, test boring using ${\c}4"$ should be drilled in order to obtain more reliable hydrogeological information for the construction of perfect wells.ells.

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한국 서해안 강화 남부 갯벌 퇴적물 및 지형의 장기적인 변화 (Long-term Changes of Sediment and Topography at the Southern Kanghwa Tidal Flat, West Coast of Korea)

  • 우한준
    • 한국습지학회지
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    • 제15권4호
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    • pp.493-500
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    • 2013
  • 강화 남부 갯벌의 장기적인 퇴적환경 변화를 파악하기 위하여 1997년과 2011년 여름철 표층 퇴적물의 분포와 1998년 4월과 2013년 3월의 갯벌 고도를 비교하였다. 표층퇴적물은 1997년에 동부의 펄, 서부의 모래 펄 퇴적물이 우세하였으나, 2011년에는 동부의 선두리와 동검도 갯벌은 펄과 모래 펄, 중부의 동막리 갯벌은 모래 펄, 그리고 서부의 여차리와 장화리 갯벌은 모래와 펄 모래 퇴적물이 우세하게 분포하였다. 지난 14년 동안 펄 퇴적물 면적은 감소하였으나, 모래와 펄 혼합 퇴적물의 면적은 동쪽으로 확장되었다. 갯벌의 장기적인 지형 변화는 지난 15년 동안 동막리와 여차리 갯벌은 퇴적, 장화리 갯벌은 침식된 것으로 나타났다. 이러한 변화들은 1990년대 이후 강화 남부 갯벌 주변에 여러 종류의 인공구조물건설에 의하여 지역적인 수리적 변화가 영향을 주었을 것이다.

경남지구(慶南地區) 동광상(銅鑛床)의 종합개발(綜合開發)에 관(關)한 조사연구(調査硏究) (A Regional Study for Developments of Kyeongnam Copper Metallogenic Province)

  • 김선억
    • 자원환경지질
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    • 제6권3호
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    • pp.133-170
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    • 1973
  • The metamorphosed belt on cherty and andesitic rocks of the Gyeongnam province area has been well known as the most important copper matallogenetic province in Korea and locally has been investigated by several geologists. This report is summarized about geology, occurrence of ore deposits, the study of the present status of mine developments and exploitations and the suggestions of future proposed of copper mine developments and harmoniously and reseonably planning of demands and supply of copper ore. For convenience of study the writer divided the survey region as 4 areas, according to the conditions of mine location. They are (1) Goseong copper area (2) Gunbuk-Haman copper area (3) Masan-Changwon copper area (4) Tongrae-Ilgwang copper area. The geology of the above 4 areas consits of Cretaceous Gyongsang System, which is divided into Silla series, Nakdong Series and Bulguksa Series. The former has intrusive and extrusive andesite and sedimentary formation, and the latter has dioritic and hornblende granite. Ore deposits which is mostly vein types are confined mostly in the andesite and cherty rocks of Silla and Nakdong Series. It is observed slight hydrothermal alteration, i. e. propylitization, chloritization, saussuritization and silicification. It seems that the ore was formed by hydrothermal solution and secondary enrichement. The ore minerals are mainly chalcopyrite and pyrite, with small amounts of malachite, azurite, chalcocite, cuprite, galena, and sphalerite, magnetite, tetrahedrite and etc.. The efficient plan of copper mine developments in surveyed region are as following; (a) Gyeongnam Copper districts are divided in 4 area as mentioned above. (b) Each area would be likely developed as group-working as one unit. For the sufficiently supplying a demand of electric copper, the importations of high grade copper ore in foreign country are invitable at present status of copper mine developments and exploitations.

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