• 제목/요약/키워드: Variation trend diagram

검색결과 20건 처리시간 0.024초

양평화성(楊平火成) 복합체(複合體)에 대(對)한 암석학적(岩石學的) 연구(硏究) (Petrology and Petrochemistry of the Yangpyeong Igneous Complex)

  • 이대성;김용준
    • 자원환경지질
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    • 제7권3호
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    • pp.123-152
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    • 1974
  • The study focused to the so called "Yangpyeong Igneous Complex" which intruded into the Gyeong Gi gneiss complex of Pre-cambrian basement of Yangpyeong area. The geologic sequence of the mapped area was shown in table 1. In laboratory work, 31 modal analyses and 7 chemical analyses on the rock samples taken from the igneous complex have been made to discuss the nomenclature of the rocks and the petrological relationship between rock types. The petrographical and petrochemical features based on the analyses are as follow; 1) The classification of this rocks based on the systematics of igneous rocks of IUGS showed that Yangpyeong Igneous complex consist of hornblende gabbro, diorite and porphyritic monzonite. The major rock forming minerals in hornblende gabbro are hornblende and plagiodase ($An_{46{\sim}55}$), in diorite, hornblende, biotite and plagioclase ($An_{23{\sim}33}$) and in porphyritic monzonite, K-feldspar, plagioclase ($An_{21{\sim}35}$), hornblende and biotite. Hornblende gabbro and diorite show coarse to medium grained hypidiomorphic granular texture and porphyritic monzonite was named by the characteristically porphyritic texture of K-feldspar phenocrysts. 2) Silica-oxides variation diagram (Fig.4) illustrate that the igneous complex is similar ttl that of Daly's average basalt-andesite-dacite-rhyolite and equivalent to the calc-alkalic rock series of Peacock's rock series. In AMF diagram (Fig. 5), the trend of the igneous complex is nearly pararell to that of the Skaergaard intrusion which shows the trend of the fractional crystalization of magma. 3) In normative Or-Ab-An diagram (Fig. 6) the general trend of the data points from gabbro to porphyritic monzonite of the igneous complex directs to a point of Or/Ab=1:1 on the side of Or-Ab. The field and laboratory evidences suggested that the Yangpyeong igneous complex was thought to be a series of comagmatic differential products.

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파주(波州) 산성화성암체(酸性火成岩體)의 암석학적(岩石學的) 연구(硏究) (Petrology and Petrochemistry of Pajoo Acidic Igneous pluton)

  • 오민수
    • 자원환경지질
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    • 제11권1호
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    • pp.1-9
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    • 1978
  • The study is on petrology and petrochemistry of Pajoo Acidic Igneous pluton which intruded into Precambrian metasediments of basement of the area. The geologic sequence of studied area was shown in table 1 and 10 modal analyses and 7 chemical analyses on the rock samples taken from the body. Pajoo Acidic Igneous rock consist of hypersthene-quartz-diorite and porphyritic adamellite which based on the classification of the subcommision on systematics of igneous rocks of IUGS. And porphyritic adamellite which occured as a small stock was intruded into hypersthene quartz diorite. The rock forming minerals of hypersthene quartz diorite are composed of plagioclase, perthite, quartz, hypersthene, hornblende, biotite and porphyritic adamellite is composed of perthite, quartz, plagioclase and biotite. And the former is hypidiomorphic granular texture and later is porphyritic texture with microcline phenocrysts. In silica-oxides variation diagram, the Pajoo acidic igneous rocks are similar to the trend of Daly's average composition and equivalent to the calc-alkalic rock series. In AMF diagram, these rocks are stock of fissure filling vein type by cooling in magmatic differentiation.

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강화도(江華島) 동남부(東南部)에 분포(分布)하는 소위(所謂) 강화섬장암질암(江華閃長岩質岩)에 대(對)하여 (Petrology and petrochemistry of the so called "Ganghwa syenitic rock" in southeastern part of Ganghwa Island)

  • 김용준;오민수
    • 자원환경지질
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    • 제11권2호
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    • pp.47-57
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    • 1978
  • The study focused on the petrology and petrochemistry of the so called "Ganghwa syenitic rocks" which intruded into metasediment of basement in southeastern part of Ganghwa Island. The geologic sequence of the mapped area was shown in table 1, 10 model analyses and 7 chemical analyses on the rock samples taken from the Ganghwa syenitic rocks and Manisan granite have been used to discuss the nomenclature of the rocks and petrological relationship between rock types. The petrograpical and petrochemical features based on, the analyses are as follows: 1) Ganghwa syenitic rocks consist of Ganghwa alkali syenite and Ganghwa diorite porphyry which based on the classification of the subcommision on systematics of igneous of IGUS. Ganghwa diorite porphyry which occured as dike forms are intruded into Ganghwa alkali syenite. The rock forming minerals of Ganghwa alkali syenite are composed of perthite, plagioclase, quartz, hornblend and chlorite in major, and zircon, apatite, sericite and magnetite in minor. Ganghwa diorite porphyries consist of plagioclase, biotite, hornblend, orthoclase and chlorite, with, porphyritic texture. 2) In silica-oxides variation (Fig. 2) and AMF diagram (Fig_ 3), the Ganghwa alkali syenite is similar to the trend of Daly's average basalt-andesite-dacite-rhyolite than Skaergaard which shows the trend of the fractional crystallization of magma, and equivalent to the alkali rock series by Peacock. 3) The general trend of data points shift to plagioclase, and are superimposed on the alkali rich terminal part of the granodiorite province of SW Finland in normative Q-Kf-Pl(Fig. 4) and Or-Ab-An diagram respectively. The above-mentioned evidences suggested that the Ganghwa syenitic rocks are the differential products resulted by assimilation of intermediated magma and metasedment rock under relatively rapid cooling condition.

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함양(咸陽)-거창(居昌) 지역(地域), 쥬라기 화강암류(花崗岩類)의 암석학적(岩石學的) 연구(硏究) (Petrology of Jurassic Granitoids in the Hamyang-Geochang Area, Korea)

  • 이철락;이윤종;하야시 마사오
    • 자원환경지질
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    • 제25권4호
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    • pp.447-461
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    • 1992
  • 본 역의 쥬라기화강암류는 "편마상화강암"과 "대보화강암"으로 분류 (1 : 250,000 전주도폭, 1973) 되어져 있으나, "대보화강섬록암"은 본 연구에서의 거창화강섬록암에 해당된다. 이들 화강섬록암류에 대한 조암광물의 경하기재, 암석화학, 및 저어콘의 형태적 연구를 하였다. 모드조성상 이들은 주로 화강성록암에 해당되지만 편마상화강섬록암은 Trondhjemitic trend를, 거창화강섬록암은 granodioritic trend를 각각 따른다. 이들 두 암체는 모두 칼크-알칼라인 계열이며 I-type (자철석계열)에 속하나, 편마상화강섬록암은 분화말기에 La, Ce, Yb의 enrichment를 겪은 반면, 거창화강섬록암은 분화초기에 Yb의 depletion을 겪은 것으로 생각된다. 사장석은 대체로 올리고클레이스에 해당한다. 흑운모는 (Mg, Fe) 고용체간의 성분변화보다 (Si, Al) 고용체간의 변화가 더 뚜렷하다. 각섬석은 거창화강섬록암에서만 제한적으로 산출되며 tschermakite에 해당한다. 저어콘 주면의 상대적 발달을 보면, 편마상화강섬록암은 대부분 {100}={110}형에 가까운 것들이 많으나, 거창화강섬록암은 {110} 탁월형 (저온형)에서 {100} 탁월형 (고온형)에 이르는 다양한 변화를 보인다. 그러나 이들은 대부분 저온형 마그마 용체내에서 결정화되었다. PPEF (Prism-Pyramid-Elongation-Flatness) 도에서, 편마상화강섬록암은 닫힌 가위형 (closed scissors type), 거창화강섬록암은 열린 가위행 (open scissors type)을 보인다. 이는 거창화강섬록암의 저어콘들이 지각물질 또는 편마상화강섬록암을 형성시킨 잔류마그마와 혼화된 마그마로부터 정출되었음을 암시해 주는 것으로 생각된다.

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경상분지 백악기 화산암류에 대한 암석화학적 고찰: 이원성 마그마의 가능성 (Petrochemical Study on the Cretaceous Volcanic Rocks in Kyeongsang Basin, Korea: Possibility of Magma Heterogeneity)

  • 성종규;김진섭;이준동
    • 자원환경지질
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    • 제31권3호
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    • pp.249-264
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    • 1998
  • The Creataceous volcanic rocks distributed in the southeastern part (Kyeongsang basin) of Korea peninsula are composed of basalt, basaltic andesite, andesite, dacite and rhyolite. The variation of major elements show that contents of MgO, CaO, $FeO^T$, $Al_2O_3$, $TiO_2$ and $P_2O_5$ decrease with increasing of $SiO_2$, but $K_2O$ contents are increased slightly, $Na_2O$ widely dispersed. We can show slightly inflection point and low frequency of dacites in range between 63-65 wt.% $SiO_2$, while continuous trend exit in variation diagram. Variation trends in Harker diagrams for the major, minor, trace and REEs suggest that the BAV (basaltic to andesitic volcanics) and DRV (dacitic to rhyolitic volcanics) are not related to a simple crystal fractionation process. In the regime of under 65 wt. % in silica content, fractionation of olivine and clinopyroxene is predominant, while that of plagioclase happens strongly higher than 65 wt.% (e.g., $SiO_2$, vs. Eu and Sr, MgO vs. $Al_2O_3$ and CaO). The latter means low-pressure fractional crystallization for DRV. On the discriminant diagram, DRV are located in more mature environment than BAV. The $(Ce/Sm)_N$ vs. CeN digram shows that these two classes cannot be related to crystal fractionation. If they had been produced by fractionation, although they plotted in a slightly elongate cluster along the same horizontal trend, DRV should lie to the right of these primitive compositions. These diagrams clearly rule out a simple fractionation throughout from BAV to DRV. BAV had been influenced greatly subductiong slab as shown by K/Yb vs. Ta/Yb. We suggest that BAV primitive magma generated higher degree of partial melting than DRV primitive magma. LILE (K, Ba, $Rb{\pm}Th$) enriched characteristics as shown in BAV are inherited from subducting slab fluids and/or higher degree of partial melting of mantle material. However, lower degree of partial melting of mantle relative to BA V and contamination at high-level magma reservoir caused LILE enrichment to DRV.

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한반도 동남부 제3기 연일, 어일분지에 나타나는 현무암질암의 암석학적 연구 (Petrology of the Tertiary Basaltic Rocks in the Yeonil and Eoil Basins, Southeastern Korea)

  • 심성호;박병준;김태형;장윤득;김정훈;김정진
    • 암석학회지
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    • 제20권1호
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    • pp.1-21
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    • 2011
  • 한반도 남동부에 자리잡고 있는 제3기 분지 중에서 장기, 어일 분지에 대한 암석학적인 기재 및 지화학적 자료를 바탕으로 과거 조구조적 위치와 현무암질암을 생성한 기원마그마의 특성을 고찰하였다. 어일 현무암질 암내 사장석 반정에서는 여러 형태의 누대구조와 융식구조 및 체구조가 나타나며 반정의 성분변화에서 핵부분은 $An_{63.46-98.38}\;Ab_{1.62-32.96}\;Or_{0-3.58}$의 영역 (anorthite-labradorite)에 도시되고, 최외각은 $An_{40.89-82.44}\;Ab_{17.10-46.43}\;Or_{0-12.68}$의 영역 (bytownite-labradorite)에 해당한다. 주원소 분석결과, 이들 암석들은 현무암질 안산암 영역에 점시되며, 비알칼리암(sub-alkaline)계열에 해당한다. TAS도에 현무암과 현무암질 안산암의 영역에 점시되며, 비알칼리암(sub-alkaline)계열에 해당한다. $SiO_2$ 값이 커질수록 $Na_2O$$K_2O$는 증가하며 $TiO_2$, $FeO^*$, CaO, MgO, $P_2O_5$는 감소하는 경향을 보여준다. $K_2O-SiO_2$도표에서도 중-K계열의 칼크알칼리계열에 해당함을 보여준다. 미량원소 및 희토류 원소의 경향은 분화가 진행됨에 따라 Co, Ni, V, Zn, Sc 등과 같은 호정성 원소는 감소하고, Ba, Rb 등의 불호정성 원소들은 증가하는 특징을 보여준다. 0.81~1.00의 $Eu/Eu^*$값은 사장석 분별작용이 일부 암석에서는 거의 일어나지 않았거나 사장석의 분별이 약했다는 것을 시사한다. 동위원소 분석결과 $^{87}Sr/^{86}Sr$은 0.704090~0.704717, $^{143}Nd/^{144}Nd$은 0.512705~0.512822로서 Nd에 비해 Sr의 변화폭이 크지만 0.0007 내외의 변화폭을 보인다. 이러한 동위원소의 변화는 연구지역 현무암이 해양판의 섭입에 의해 결핍맨틀과 부화맨틀이 혼합되어 형성된 마그마에 기원함을 추정할 수 있게 한다. 동위원소비는 맨틀 경향에 잘 따르며 결핍맨틀(DMM)과 부화맨틀(EM)의 섞임 현상에 의한 맨틀조성을 갖는 마그마에 기원을 두고 있다.

울릉도(鬱陵島) 북부(北部) 알칼리 화산암류(火山岩類)에 대(對)한 암석학적(岩石學的) 연구(硏究) (Petrology of Alkali Volcanic Rocks in Northern part of Ulrung Island)

  • 김윤규;이대성
    • 자원환경지질
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    • 제16권1호
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    • pp.19-36
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    • 1983
  • The study revealed that the sequence of volcanism in Ulrung island can be classified into 5 stages, and the volcanic history is summerized as follow: 1st stage: Eruption of basaltic agglomerates, tuffs and lavas, 2nd stage: Eruption of trachytic and trachyandesitic agglomerates and tuffs, 3rd stage: Eruption of trachyte lavas and their lapilli tuffs, 4th stage: Eruption of trachyte lavas and nepheline phonolites, 5th stage: Eruption of pumice, trachytic ash and lapilli, and plutonic ejecta (fragments of alkali gabbro, monzonite and alkali feldspar syenite) and a subsequent caldera formation. Finally, a small scale eruption of leucite bearing trachyandesite lava in the caldera. Several evidences show that there have been long erosional intervals between the 1st and 2nd stages and between the 4th and 5th stages. A K-Ar age for trachybasalt lava of the 1st stage was determined to be 1.8 Ma, and a $C^{14}$ age, 9300Y. (Machida, 1981) is available for these volcanic events. Therefore, it is considered that volcanic activity of the island above sea level began at least in early Pleistocene, and continued to until 9300 years ago exploding large amount of pumice, prior to pouring out of leucite bearing trachyandesite from the inner caldera. Using solidification index (SI) of Kuno, microscopic texture and mineral composition as criteria of the classification, the volcanic rocks are classified into alkali basalt, trachybasalt, trachyandesite, trachyte and phonolite. These are mostly prophyritic in texture. Main constituent minerals of alkali basalt and trachybasalt are plagioclase, olivine, Ti-augite and magnetite. Principal minerals of trachyandesite are plagioclase, anorthoclase, clinopyroxenes, kaersutite, biotite and magnetite. Trachyte and phonolite consist mainly of anorthoclase, clinopyroxene and magnetite, showing typical trachytic texture in groundmass. In solidification index, alkali basalt ranges from 39 to 27, trachybasalt 17 to 14, trachyandesite 12 to 9 and trachyte 8.15 to 0.72. A trend of compositional variation showing a typical alkali volcanic rock series is revealed on $SiO_2$-oxides and SI-oxides diagrams. In $SiO_2$-total alkali diagram, alkali lime index and An-Ab'-Or diagram, the samples fall into the fields of potassic series of the alkali volcanic rock series, whereas in A-F-M diagram show a trend toward the alkali enrichment with a curve approaching toward the iron apex. In particular, trachybasalt lavas in this island have higher total iron contents which is comparable to alkali rocks in other areas, e. g. as Gough and Tristan volcanic islands located near the Mid-Oceanic ridge in South Atlantic Ocean.

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광주(光州) 북동부(北東部)에 분포(分布)하는 소위(所謂) 편상화강암(片狀花崗岩)에 관(關)한 암석학적(岩石學的) 연구(硏究) (Petrologic Study on the so-called Schistose Granites in the northeastern part of the Kwangju)

  • 김정빈;김용준
    • 자원환경지질
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    • 제17권3호
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    • pp.197-214
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    • 1984
  • This studg is to clarify intrusion sequence and petrogenetic processes of the so-called schistose granites in the northeastheastern part of the Kwangju, Chonnam Province. The study area is composed of the Pre-cambrian and Unknown age metasediments, the Unknown age schistose granites and basic plutons, the Cretaceous sedimentary and volcanic rocks, and the Cretaceous Ogang-ri granite and dykes. The schistose granites of the study area is divided into three rock units based on relative intrusion age, mineralogical constituent and texture;SoonChang schistose granite, two mica granite and Sam-o-ri schistose granite. The schistose granites intruded into metasediments, are intruded by Ogang-ri granite and dikes, and overlain by the Cretaceous sedimentary and volcanic rocks. The schistose granites vary widely in composition (granite-granodiorite-tonalite) and content of porphyroblastic feldspar Caugen and rectangular shaped). The foliation of schistose granites shows similar trend to the Shinian direction. In especially, strong foliation reflects dynamic metamorphism by mortar texture and much content of well oriented biotite. These schistose granites are characterized by its gray feldspar porphyroblasts. This feldspar is considered to be formed by potassic metasomatism and assimilation of pelitic metasediments of unexposed highly metamorphosed rocks deeply buried under the level of the schistose granites emplacement. Variation of silica versus oxides of major elements shows that the schistose granites are similar to the trend of Daly's average basalt-andesite-dacite-rhyolite which shows the trend of the fractional crystallization of magma. AMF diagram shows that the schistose granite is corresponded to contaminated differentiation products such as Lower California batholith and Cascade lava. These evidence suggest that the schistose granite is a series of differentiation products formed by fractional crystallization that associated with srtongly contamination and potassic metasomatism.

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원격탐사기반 시화호 간척사업과 갯골변화 관찰 (Monitoring Variation of Tidal Channels associated with Shihwa Reclamation Project using Remote Sensing Approaches)

  • 박찬혁;유재형;김지은;양동윤
    • 자원환경지질
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    • 제52권4호
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    • pp.299-312
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    • 2019
  • 본 연구는 시화호 대규모 간척사업의 개발기간에 따른 갯골의 변화양상을 원격탐사적으로 분석하였다. 간척사업 기간을 개발기, 폐쇄기, 개방기로 나누고, CORONA, Landsat 5 TM, Landsat 7 ETM+, 항공정사영상을 활용하여 각 시기별 갯골의 수, 연장, 너비, 방향 등의 변화양상을 분석하였다. 갯골의 수는 전반적으로 개발기에서 개방기까지 감소하는 추세를 보였으나 3차 갯골의 경우 1차, 2차 갯골과는 달리 유지되는 경향을 보였다. 갯골의 연장은 개발기부터 폐쇄기까지 전반적으로 감소하는 추세를 나타내었고, 개방기에 2차, 3차 갯골의 연장이 증가하는 추세를 보였다. 평균너비는 2차, 3차 갯골이 개발기에서 폐쇄기까지 감소하는 추세를 보이다가, 개방기 이후 증가하는 경향을 보인다. 갯골의 방향은 전반적으로 북서와 남동 방향을 보이지만, 폐쇄기에서 개방기로 전환되는 시점을 기준으로 장미도표(Rose diagram)의 형태가 남동방향의 빈도가 줄고 북서 방향 주변에서 집중되어 형태를 보였다. 이러한 갯골의 변화는 시화호 개발이전 안정적으로 에너지가 공급되던 환경에서 폐쇄기의 인공적인 환경변화로 인한 에너지의 차단, 그리고 다시 수문이 개방되어 갯골에 일부 에너지가 공급되는 환경변화로 인해 발생한 것으로 판단된다.

울릉도 화산암의 주원소, 휘토류 및 미량원소 지구화학 (Major, Rare-Earth and Trace Geochemistry of Ulleungdo Volcanic Rocks)

  • 송용선;박계헌;박맹언
    • 암석학회지
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    • 제8권2호
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    • pp.57-70
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    • 1999
  • 울릉도의 화산암들은 매우 높은 알칼리 함량을 보이며 대부분 K2O/Na2O 비율이 높은 K-계열에 속한다. 울릉도의 화산암들은 매우 넓은 범위에 걸친 조성변화를 보여 총알칼리-실리카 분류도에 현무암으로부터 조면현무암, 현무암질 조면안산암, 조면안산암을 거처 조면암에 이르기까지의 범위를 차지한다. 이러한 조성의 일반적인 변화경향은 광물의 정출에 의한 분화에 의해 대체로 잘 설명되며 감람석, 단사휘석, 사장석, 티탄철석 및 인회석이 주된 정출광물로 판단된다. 울릉도 화산암의 Nb/U, Pb/Ce 값은 MORB, OIB등과 같은 해양성 화산암과 같으며 도호환경의 암석들과는 상당한 차이가 있어 이들의 생성이 일본열도를 연한 섭입작용과는 직접적인 관계가 없음을 말해준다. LREE가 HREE에 비해 매우 부화된 모슴을 보인다((La)N=193-420, (Lu)N=7.5-19.5). 다양한 암석중 조면암-1만이 두드러진 음의 뗘 이상치를 갖으며 상당한 사장석의 정출을 수반하여 만들어진 것으로 판단된다. 그러나 조면암-2와 조면암-3 및 포놀라이트와 부석등은 미량원소와 희토류원소의 변화경향이 조면암-1과 다르며, 별도의 마그마 솥에서 만들어져 서로 다른 분화경로를 갖고 진화한 것으로 판단된다. 울릉도 화산암에서는 성분의 양분화 및 중간 조성의 결핌 현상이 현저하게 나타난다.

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