• 제목/요약/키워드: Lower Cretaceous

검색결과 127건 처리시간 0.021초

한반도(韓半島) 남부지역(南部地域)의 고령토-납석광상(鑛床) 생성기구(生成機構) (Some Aspects of Kaoline-Pyrophyllite Deposits in Southern Korea)

  • 상기남
    • 자원환경지질
    • /
    • 제19권spc호
    • /
    • pp.43-52
    • /
    • 1986
  • Kaolin-pyrophyllite are locally abundant in the three hydrothermal areas at Yangsan-Tongnae area, Hadong-Sancheong area and Haenam area, deposits are originally composed of acidic volcanic rocks and anorthositic rocks in Hadong-Sancheong area. The clay deposits are formed in the near shallow depths environment through acid hydrothermal alteration. Hadong-Sancheong halloysite deposits are formed by alteration of anorthosite. These differences are mainly on the various country rocks, geological structure and properties of hydrothermal solutions. Country rock is mostly underlain by rhyolitic tuffaceous and anorthositic rocks and a large number of clay deposits were formed during volcanic activity through upper Cretaceous-lower Tertiary. Intrusive rocks is broadly distributed in this area and clay deposits are variable in shapelayer and funnel typed. Zonal pattern of mineral assemblage is as follows, Yangsan-Tongnae deposits-kaolinite, pyrophyllite, dumortierite, andalusite and sericite, Hadong-Sancheong-mostly halloysite, and Haenam-dickite, pyrophyllite, alunite and diaspore. The difference in the zonal pattern of altered rock is considered to depend on differences in the initial acidity of related hydrothermal solution, initial acidity was controlled by the oxygen fugacity.

  • PDF

거제(巨濟) 동아광산(東亞鑛山)의 지질(地質) 및 광상(鑛床) (Geology and Ore Deposits of Geoje Dong-A Mine)

  • 김종대
    • 자원환경지질
    • /
    • 제19권spc호
    • /
    • pp.103-112
    • /
    • 1986
  • The geology of the mine consists of Cretaceous lower andesitic breccia member, tuffaceous black shale, upper tuffaceous sandstone member and andesitic dike. Ore bodies are two parallel veins of breccia originated from hydrothermal activity of later acidic igneous intrusion. First two periods of mineralization, gold and silver, and copper, and later copper enrichment was identified. The first two might have been occurred during boiling of hydrothermal solution that formed breccia and copper enrichment was accomplished by enhancement of $CO_2$ fugacity from the organic material contained in the black shale. With all the geologic and mineralogic data and inferences attained from other investigators it was estimated that the optimum depth of the ore mineralization was between 500m and 300m below the surface of Kyong-Sang series.

  • PDF

경상분지(慶尙盆地)에서 발견(發見)되는 함광퇴적암층(含鑛堆積巖層) (Ore-Bearing Sedimentary Formation in the Cretaceous Gyeongsang Basin, S.Korea)

  • 최위찬;윤욱
    • 자원환경지질
    • /
    • 제24권3호
    • /
    • pp.227-232
    • /
    • 1991
  • Since "Gyeonsang Formation" has been introduced 90 years ago by B.Koto(1903), it was newly found within the lower Chomgog Formation ore mineralized zone. The mineralized zone occurs along the stratigraphic unit there. The ore minerals are mainly composed of hematite, ilmenite and magnetite. The molybdenum (2.100-3.100ppm?), copper and zinc are the accessories. There are also traces of cadmium, gadolinium, neptunium, ruthenium and tin. The ore mineralized zone shows about 1 km of apparent thickness with 10 to 12 degrees of plunging on the surface and extends 12 km along its strike in the U-Bo sheet(Chwae et al., 1990). The mineralized zone could be valuable to correlate the stratigraphic sequence between the Uisong and Mirryang subbasins, if giving consideration of the Palgongsan lineament (Chang, 1975).

  • PDF

월성(月城) 남부(南部) 치술령 지역(地域)의 화산암(火山岩) (Ash-Flow Tuffs of the Chisulryoung Volcanic Formation and Associated Welded Tuff Instrusion, Weolseong District, Southern Korea)

  • 박기화;김선억
    • 자원환경지질
    • /
    • 제18권2호
    • /
    • pp.125-134
    • /
    • 1985
  • 치술령 지역(地域)에 분포(分布)하는 화산암(火山岩)은 Ash flow tuff, intrusive welded tuff 및 Diatreme으로 세분(細分)된다. 제삼기(第三紀) 초기(初期)에 분출(噴出)한 Ash flow tuff는 6개(個)의 층(層)(Member)으로 구분(區分)되고, 각층(各層)(Member)의 암상(岩相) 변화(變化)는 암주형(岩柱型)의 Intrusive welded tuff가 화산(火山) 분출(噴出) 화구(火口)였음을 암시(暗示)한다.

  • PDF

형석광상(螢石鑛床)의 지질온도측정(地質溫度測定) 연구(硏究) 특(特)히 충북(忠北) 월악산지대(月岳山地帶) 및 천일광산(天一鑛山) 형석(螢石)의 연구(硏究)를 중심(中心)으로 (Geothermometrical Studies of Fluorite Deposits with special reference to the Studies of Fluorites from the Wolaksan area and Cheonil Mine, Chungcheongbuk-Do)

  • 윤석규
    • 자원환경지질
    • /
    • 제6권4호
    • /
    • pp.195-200
    • /
    • 1973
  • Temperature environments of the formation of fluorite deposits in the Wolaksan area and the Cheonil Mine, Chungcheongbuk-Do are presented and interpreted in brief. These deposits occur more or less near the contact zone between the Paleozoic limestone formations and the Cretaceous biotite granites as a number of hydrothermal veins or replacement deposits. The homogenization temperatures of fluorite crystals from the Wolaksan area fall within the narrow range of $149{\sim}167^{\circ}C$, of which lower limit is quite high, while those of the Cheonil Mine show wide range of $126{\sim}177^{\circ}C$, which indicates much lower mean temperature of formation. If the possible correction for pressure, which may not exceed $+30^{\circ}C$ as the depth of the deposits was 1.5km, were applied, the possible highest value of the true formation temperatures of fluorites in both area might be reached to around $200^{\circ}C$ that means these deposits were formed as a series of early products of the epithermal stage of hydrothermal processes.

  • PDF

충북-충남-대전지역 구성암류의 지질시대별 및 암종별 분포율 (Areal Distribution Ratios of the Constituent Rocks with the Geologic Ages and Rock Types in the Chungbug-Chungnam-Daejeon Areas)

  • 윤현수;이진영;양동윤;홍세선
    • 암석학회지
    • /
    • 제17권4호
    • /
    • pp.191-205
    • /
    • 2008
  • 암석자원의 산업화, 각종 부지확장과 개발 계획 시에 지질정보 자료로 활용될 수 있도록 충북, 충남과 대전지역에서 구성암류의 지질시대별 분포율을 ArcGIS 9.2, 1 대 250,000 수치지질도 및 수치지형도를 사용하여 추출하였다. 충북지역은 모두 64개의 구성암류가 발달하며 8개의 지질시대로 대분될 수 있다. 시대별로는 쥬라기, 선캠브리아기, 시대미상, 백악기, 제4기, 캠브로-오도비스기, 석탄기-삼첩기 등의 순으로 분포율이 감소하며, 이들이 도합 98.48%를 가져 거의 대부분을 차지한다. 구성암류는 대보화강암, 경기편마암복합체내 호상편마암, 백악기의 흑운모화강암, 충적층, 대석회암층군, 옥천층군내 하부 천매암대와 변성사질암대 청산화강암, 경기편마암복합체내 화강암질 편마암, 옥천층군내 함력 천매암대 그리 소백산편마암복합체내 흑운모편마암의 순으로 그 분포율이 감소한다. 이들 암류는 도합 84.27%의 우세한 분포율을 차지한다. 충남지역은 모두 35개의 구성암류가 발달하며 6개의 지질시대로 대분될 수 있다. 시대별로는 선캠브리아기, 쥬라기와 제4기 등의 순으로 그 분포율이 감소하며, 이들이 도합 87.55%의 우세한 값을 차지한다. 구성암류는 대보화강암, 경기편마암복합체내 호상편마암, 충적층, 경기편마암복합체내 화강편마암과 화강암질 편마암, 산성암맥류, 옥천층군의 하부천매암대 그리고 매립지의 순으로 그 분포율이 감소하며, 이들이 도합 74.28%를 차지한다. 대전지역은 모두 11개의 구성암류가 발달하며 5개의 지질시대로 대분될 수 있다. 시대별로는 쥬라기, 시대미상, 제4기 등의 순으로 그 분포율이 감소하며, 이들은 도합 93.40%를 이루어 대부분을 차지한다. 구성암류는 대보화강암, 충적층, 옥천층군의 하부천매암대와 함력친매암대, 산성암맥류의 순으로 감소하며, 이들이 도합 91.09%에 해당하여 그 대부분을 차지한다.

영남육괴 남서부에 분포하는 백악기 화산암류에 대한 암석학적 연구: (1) 승주군 문유산 화산암복합체 (Petrological Study on the Cretaceous Volcanic Rocks in the southwest Ryeongnam Massif: (1) the Mt. Moonyu volcanic mass, Seungju-gun)

  • 김영라;고정선;이정현;윤성효
    • 암석학회지
    • /
    • 제17권2호
    • /
    • pp.57-82
    • /
    • 2008
  • 영남육괴의 남서부에 분포하는 백악기 말의 문유산 화산암복합체는 아래로부터 산성 화성쇄설암, 안산암과 안산암질 쇄설암, 유문암으로 구분할 수 있다. 가장 오래된 화산활동은 화산쇄설성 퇴적물이 퇴적되는 동안 산성 마그마의 간헐적인 분출로 시작되었다. 산성 화성쇄설암의 폭발적인 분출은 강하회에서 시작되어 부석강하로 발전되어 데사이트질${\sim}$유문암질 화산회류 분화로 변하였다. 그 이후에는 안산암과 안산암질 화성쇄설암의 분출이 일어났고, 최종적으로 화산암체의 중앙에 가까운 틈을 따라 용암돔의 형태로 유문암이 관입하였다. 암석화학적 데이터는 이러한 암석들이 칼크-알칼리암 계열이며, 섭입대와 관련된 대륙연변부 화산호와 지구조적으로 관련성이 있다는 것을 보여준다 주성분원소 조성은 medium-K에서 high-K의 범위를 가진다. 이 지역의 화산암류에서 암석화학적 변화는 부수적인 혼합과 더불어 분별결정작용으로 설명할 수 있다. 가장 매픽한 암석은 현무암질안산암이지만, 낮은 MgO와 Ni 함량은 이들이 상부 맨틀 웨지 내 초염기성암의 20%이내의 부분용융에서 유래된 초기의 초생 마그마로부터 분별결정작용에 의해 형성되었음을 지시한다. 층서상으로 초기의 화산암은 조성적으로 하부의 산성암과 상부의 안산암으로 분대되어 분포한다. 상부의 산성에서 하부의 안산암질로 조성적으로 누대구조를 보이는 마그마 챌버는 챔버 내에서의 분별작용과 깊은 곳에서의 새로운 염기성 마그마가 유입되어 보충된 결과로 사료된다. 마그마의 보충에 따른 혼합은 화산암 내의 비평형적인 반정의 관찰에 기초한다. REE 패턴은 안산암에서 유문암으로 분화되면서 LREE가 약간 부화되어 있음을 보여준다. 마지막 단계의 유문암은 분별결정작용에 의해 칼크-알칼리 안산암질 마그마로부터 유래되었으며, 이는 분별결정작용 동안 지각 동화작용을 겪은 것으로 보인다.

하동일산청지역(河東一山淸地域)의 아노르도사이트의 성인(成因)에 관(關)하여 (On the Origin of Anorthosite in the Area of Hadong, Sancheong, Gyeongsang-namdo, Korea)

  • 손치무;정지곤
    • 자원환경지질
    • /
    • 제5권1호
    • /
    • pp.1-20
    • /
    • 1972
  • A large anorthositic mass outcropped as mushroom-like body extending up to 46km which occurs in the Hadong kaoline district of southern Korea. The anorthositic mass is in contact with the metamorphic, plutonic and sedimentary rocks. The metamorphic rocks are of granitic gneiss and banded gneiss, etc; the plutonic rocks are of gabbroic and dioritic rocks, schistose granite, syenite, diorite and granite. The sedimentary rocks include siltstone and pebbly sandstone of Lower Gyeongsang System, Cretaceous in age. The anorthositic mass shows a gradational contact with the metamorphic and sedimentary rocks, and is cut by the plutonic rocks except gabbroic and dioritic rocks. The anorthositic mass is leucocratic in the central portion of the mass, and, in turn, grades to rock phases in which ma/ic minerals are irregularly scattered, then to the well-lineated rock and finally to the banded gneiss. Lineation of the anorthositic mass is accordant with that of the surrounding banded gneiss, and the lineation continues toward the gneiss. In some places, the rock phases in which mafics are scattered is gradational with adjacent sedimentary rocks. The anorthositic mass in contact with gabbroic and dioritic rocks shows spotted features. Various replacement features seen under the microscope and paragenetic sequence of the mineral components in the anorthositic rocks cannot be considered as the origin of magmatic crystallization. From the field and microscopic observations, it is concluded that the anorthositic mass was formed from replacement of the metamorphic rocks and plutonic rocks by the anorthositic magma.

  • PDF

국내탄의 석탄암석학적 특성 (Coal Petrological Characteristics of Korean Coal)

  • 박홍수;박석환
    • 자원환경지질
    • /
    • 제22권2호
    • /
    • pp.141-150
    • /
    • 1989
  • In order to make economic and geological evaluation of coal in Korea, proximate and ultimate analyses were carried out as well as coal petrological studies such as maceral analyses, vitrinite reflectance and sporinite fluorescence measurement. The coeffcient of correlation between each factor of both conventional utilization and coal petrological parameters were studied as in Table 5 and 6. Their conclusions were as follow: (1) for anthracite, the good parameters of coal rank are mean vitrinite reflectance, carbon content, hydrogen content and H/C atomic ratio: (2) for brown coal and sub-bituminous coal, the good parameters of coal rank are carbon content, calorific value, moisture content, hydrogen content, oxygen content and O/C atomic ratio as well as vitrinite reflectance and sporinite fluorescence. An attempt is made to infer the coalforming environment by utilization of coal petrological analyses and to make comparison of coal analyses with proximate and ultimate analyses throughout the island arc region including Japan, Philippine and Indonesia and continental region including USA, Canada and Australia. As a result, meceral composition of Paleozoic and Mesozoic anthracite are similar to that of the Paleozoic continental coals, which were formed under dry conditions or low water table, but the coalification degree suddenly increased during Daebo orogeny (middle Jurassic to lower Cretaceous). The Tertiary coal resembles those of Tertiary island arc region coal characterized by higher calorific value, volatile matter content and H/C atomic ratio and by the formation of coal under wet conditions or higher water table.

  • PDF

거제동광상(巨濟銅鑛床)의 광물공생관계(鑛物共生關係)와 유체포유물(流體包有物) (Mineral Paragenesis and Fluid Inclusions of Geoje Copper Ore Deposits)

  • 김찬종;박희인
    • 자원환경지질
    • /
    • 제17권4호
    • /
    • pp.245-258
    • /
    • 1984
  • Geoje copper ore deposits are fissure filled copper veins which developed in late Cretaceous pyroclastics, andesite and shale. Mineral paragenesis reveals a division of the hydrothermal mineralization into three stages: Stage I, deposition of pyrite, magnetite, specularite, quartz and chlorite; Stage II, deposition of chalcopyrite, sphalerite, galena, tetrahedrite, aikinite, cosalite, electrum, quartz and chlorite; Stage III, deposition of barren calcite. Filling temperatures of fluid inclusions in quartz of stage I range from 171 to $282^{\circ}C$ whereas fluid inclusions in quartz and sphalerite of stage II range from 213 to $262^{\circ}C$ and from 186 to $301^{\circ}C$ respectively. Salinities of fluid inclusions in quartz of stage I range from 5.2 to 11.2 weight percent equivalent to NaCl. Salinities of fluid inclusions in quartz and sphalerite of stage II range from 6.6 to 10.9 and from 7.1 to 14.4 weight percent equivalent NaCl. Salinities of ore fluid during major mineralization stage in this deposits reveal nearly the same ranges as those of many copper deposits in Koseong copper mining district which located about 30km apart from Geoje mine. But filling temperatures of fluid inclusions formed during major copper mineralization stage in this deposits show slightly lower than those of copper deposits in Koseong copper mining district.

  • PDF