• 제목/요약/키워드: Magnetite formation

검색결과 101건 처리시간 0.025초

산화철 합성에 미치는 침전제와 초음파의 영향 (Influence of the Precipitation Medium and Ultrasonic Wave on the Synthesis of Iron Oxide)

  • 임종호;김태현;이승원
    • 한국재료학회지
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    • 제16권11호
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    • pp.687-691
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    • 2006
  • Synthesis of Iron oxides by air oxidation of $FeSO_4$ solutions in the presence of NaOH, Diethylenetriamine (DETA), Butylamine (BA) and influence of ultrasonic wave were investigated by XRD, SEM and particle size analyzer. As the DETA addition increased to 0.05 mol, $Fe_3O_4$ was formed with goethite($\alpha$- FeOOH) and $Fe_3O_4$ single phase was formed above 0.18mol of DETA. As the BA addition increased, the XRD peak intensity of (020) face of lepidocrocite($\gamma$-FeOOH) was developed until the formation of $Fe_3O_4$ and reduced the size of the iron oxide particles formed. Ultrasonic wave reduced the size of the iron oxide particles but gave little effects on the iron oxide particles synthesized by amine.

전자에너지 손실분광 분석법을 이용한 정량적 철산화수 측정 (Quantitative Determination of Fe-oxidation State by Electron Energy Loss Spectroscopy (EELS))

  • 양기호;김진욱
    • 자원환경지질
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    • 제45권2호
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    • pp.189-194
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    • 2012
  • 생지화학적 반응으로 생성된 광물은 화학적 혹은 구조적 변화를 보여주고 있다. 이러한 광물형성의 메커니즘을 밝히기 위해서는 고해상도를 가진 전자현미경을 이용한 나노스케일 분석이 불가피 하다. 투과전자현미경에 장착되어있는 전자에너지 손실분광 분석법 (EELS)을 이용하여 미생물-광물반응 시 일어나는 현상을 두 가지의 예를 들어서 설명하고자 한다. 1) 철 환원 박테리아에 의한 논트로나이트 의 일라이트 로의 전이; 2) 자철석의 환원으로 인한 능철석의 형성. 특히 철산화/환원의 정량적 분석을 통하여 시간적 변화에 따른 철 산화도 측정은 생지화학적 광물변화에 대한연구를 용이하게 해준다. 따라서 본 논문은 EELS의 분석방법 및 장점을 소개함을 목적으로 한다.

의성지역에 분포하는 백악기 지층에 대한 고지자기 연구 (A Paleomagnetic Study of Cretaceous Rocks from the Euiseong Area)

  • 도성재;김광호
    • 자원환경지질
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    • 제27권3호
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    • pp.263-279
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    • 1994
  • Paleomagnetic and rock-magnetic data of Cretaceous sedimentary and volcanic rocks from the Euiseong area indicate that the stable components of remanence are carried by single and pseudo-single domain magnetite, with the exception of the Shinyangdong Formation which has been remagnetized. The Hayang Group, except for the remagnetized Shinyangdong Formation, yields the mean characteristic direction of $D/I=22.5^{\circ}/57.2^{\circ}$ (${\alpha}_{95}=4.6^{\circ}$, N=14 sites) and the pole position is $72.0^{\circ}N$, $206.4^{\circ}E$ ($dp/dm=4.9^{\circ}/6.7^{\circ}$). The Yucheon Group shows two polarities and the mean characteristic direction of $D/I=351.2^{\circ}/60.5^{\circ}$ (${\alpha}_{95}=11.2^{\circ}$, N= 19 sites) and the pole position is $81.3^{\circ}N$, $79.0^{\circ}E$ ($dp/dm=13.0^{\circ}/17.0^{\circ}$). The mean directions of both the Hayang and the Yucheon Groups are supported by the McElhinny's fold test at the 99% confidence level and that of the Yucheon Group by a reversal test at the 95% confidence level. A magnetostratigraphic correlation between polarities of the study formations and the Geomagnetic Time Scale indicates that the Hayang Group can be correlated to the Cretaceous Long Normal Superchron (CLNS), and the Yucheon Group to the boundary between the CLNS and the Polarity Chron 33R or later boundaries between normal and reverse polarities. Comparison of the paleopoles from this study with those from the surrounding areas both within the Gyeongsang basin and in the northeastern Asia indicates that the study area was not undergone significant tectonic rotations with respect to the other parts of the Gyeongsang basin and that the Korean Peninsula was the part of the single terrane of the northeastern Asia at least since the CLNS. The Yucheon Group can be divided into four sub-groups based on the paleomagnetic data, suggesting that there were at least four times of volcanic activities in the study area.

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영동분지에 분포하는 백악기 퇴적암류의 재자화 (Remagnetization of the Cretaceous Sedimentary Rocks in the Yeongdong Basin)

  • 도성재;조윤영;석동우
    • 자원환경지질
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    • 제29권2호
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    • pp.193-209
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    • 1996
  • Paleomagnetic and rock-magnetic data have been obtained from the Cretaceous rocks (Yeongdong Group, volcanic rock, and intrusive rocks) which are exposed in the Yeongdong Basin. The characteristic remanent directions of these rocks, which are mainly carried by magnetite and hematite of single and pseudo-single domain sizes, are normally magnetized (Yeongdong Group: $D/I=29.6/59.0^{\circ}C$, k=75.7, ${\alpha}_{95}=3.3^{\circ}$, N=25 sites, paleopole at $198.0^{\circ}E$, $66.4^{\circ}N$, K=46.1, $A_{95}=4.3^{\circ}$; volcanic rock: $D/I=352.8/44.1^{\circ}$, k=44.2, ${\alpha}_{95}=18.8^{\circ}$, N=3 sites, paleopole at $340.0^{\circ}E$, $78.8^{\circ}N$, $K=49.8^{\circ}E$, $A_{95}=17.6^{\circ}$X>; intrusive rocks: $D/I=358.4/51.9^{\circ}C$, k=20.0, ${\alpha}_{95}=13.8^{\circ}$, N=7 sites, paleopole at $338.1^{\circ}E$, $86.8^{\circ}N$, K=13.5, $A_{95}=17.1^{\circ}$). The stepwise unfolding of the characteristic remanent magnetization (ChRM) of the Yeongdong Group reveals that a maximum value of k is observed at 60% of unfolding with $D/I=13.0/58.6^{\circ}$ (k=124.62, ${\alpha}_{95}2.6^{\circ}$) indicating that the ChRM was aquired during ti1ting of the strata. This remagnetized ChRM in the sedimentary strata is due to acquisition of geomagnetic field direction at the time of formation of authigenic magnetic minerals, although it is not totally ruled out that the formation of authigenic magnetic minerals was affected indirect1y by the elevated temperature originated from the volcanic and intrusive rocks which intruded between Late Cretaceous and Early Tertiary.

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거도광산(巨道鑛山) Fe-Cu 및 Au-Bi-Cu 광상(鑛床)에 대(對)한 광물학적(鑛物學的) 및 성인적(成因的) 연구(硏究) (Mineralogy and Genesis of Fe-Cu and Au-Bi-Cu Deposits in the Geodo Mine, Korea)

  • 고재동;김수진
    • 자원환경지질
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    • 제15권4호
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    • pp.189-204
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    • 1982
  • The Geodo mine is located in the southern limb of the Hambaeg syncline. Geology of the area consists of Paleozoic-Mesozoic sedimentary Rocks and Cretaceous igneous rocks. The important igneous rocks presumably related to skarnization and ore mineralization in the area, are the early granodiorite and the late porphyritic granodiorite. Two mineralogical types of ore deposits are recognized in the area. They are the Fe-Cu deposits in the Myobong formation and the Au-Bi-Cu deposits in the Hwajeol formation. Contact metamorphism due to granodiorite intrusion includes hornfelsization, exoskarnization and endoskarnization. Wall-rock alterations related to the Fe mineralization are grouped into the hydrothermal replacement skarnization and the hydrothermal filling skarnization. Another hydrothermal alteration is associated with the Cu mineralization. Various mineralogical analyses have been applied for the identification of minerals. They include optical microscopy, chemical analysis, etching test, X-ray diffraction, and infrared absorption spectroscopic analyses. The ore minerals in these ore deposits are classified into two groups;hypogene and supergene minerals. Hypogene minerals consist of magnetite, pyrite, chalcopyrite, and chalcocite. Supergene minerals consist of chalcocite, bornite, and geothite. Ore minerals show various kinds of ore texture: open-space filling, exsolution, replacement, and cementation texture. The gangue minerals consist of quartz, diopside, epidote, garnet and plagioclase in the hornfelsic zone, garnet, diopside, scapolite, actinolite, sericite, chlorite, quartz, and calcite in the skarn zone, and, epidote, chlorite, sericite, quartz, and calcite in the late hydrothermal alteration zone. This study shows that the Fe-Cu deposits are of metasomatic pipe type with the later hydrothermal fillings, and the Au-Bi-Cu deposits are of hydrothermal fissure-filling type. The mineralization is probably related to the intrusion of porphyritic granite.

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태백산광화대(太白山鑛化帶) 연화(蓮花)-거도광산(巨道鑛山)에 있어서의 스카른과 광석광물(鑛石鑛物)의 수반관계(隨伴關係) 및 상평형(相平衡) (Skarn-Ore Associations and Phase Equilibria in the Yeonhwa-Keodo Mines, Korea)

  • 윤석규
    • 자원환경지질
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    • 제16권1호
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    • pp.1-10
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    • 1983
  • The Yeonhwa (I, II) and Keodo mines, neighboring in the middle part of the Taebaegsan mineral belt, contain three distinct classes of skarn deposits: the zinc-lead skarn at Yeonhwa (I, II), the iron skarn at Keodo south (Jangsan orebodies), and the copper skarn at Keodo north (78 orebodies). The present study characterizes the three classes of skarn deposits mainly in terms of skarn/ore associations examined from chemical compositional point of view, and applies existing quantitative phase diagrams to some pertinent mineral assemblages in these mines. At Yeonhwa I the Wolam I orebody shows a vertical variation in skarn minerals ranging from clinopyroxene/garnet zone on the lower levels through clinopyroxene (without garnet) zone on the intermediate levels, and finally to rhodochrosite veins on the upper levels and surface. Ore minerals, sphalerite and galena, associate most closely with the intermediate clinopyroxene zone. At Keodo, the Jangsan iron skarn hosted in quartz monzodiolite as a typical endoskarn, shows a skarn zoning, from center of orebody to outer side, magnetite zone, magnetite/garnet zone, garnet clinopyroxene zone, and clinopyroxene/epidote/plagioclase zone. The 78 copper skarn in the Hwajeol limestone indicates a zoning, from quartz porphyry side toward limestone side, orthoclase/epidote zone, epidote/clinopyroxene zone, and clinopyroxene/garnet zone; chalcopyrite and other copper sulfides tend to be in clinopyroxene/garnet zone. Mioroprobe analyses of clinopyroxenes and garnets from the various skarn zones mentioned above revealed that the Yeonhwa zinc/lead skarns are characterized by johansenitic clinopyroxene (Hd 25-78, Jo 15-23) and manganoan andraditic garnet (Ad 13-97, Sp 1-24), whereas the Jangsan iron skarn at Keodo by Mn-poor diopsidic clinopyroxene (Di 78-93, Jo 0.2-1.0) and Mn-poor grossularitic grandite (Gr 65-77, Sp 0.5-1.0). The 78 copper skarn at Keodo is characterized by Mn-poor diopsidic-salite (Di 66-91, Jo 0.2-1.1) and Mn-poor andraditic grandite(Ad 40-74, Sp 0.5-1.1). The compositional charateristics of iron, copper, and zinc-lead skarns in the Yeonhwa-Keodo mines are in good correlations with those of the foreign counterparts. Compiling a $T-XCO_2$ phase diagram for the Jangsan endoskarns, a potential upper limit of temperature of the main stage of skarn formation is estimated to be about $530^{\circ}C$, and a lower limit to be $400^{\circ}C$ or below assuming $XCO_2=0.05$ at P total=1kb. Applying a published log $fS_2$-log $fo_2$ diagram to the Keodo 78 and Yeonhwa exoskarns, it is revealed that copper sulfides and zinc-lead sulfides do not co-exist stably below log $fS_2=-4$ and log $fO_2=-23$ at $T=400^{\circ}C$ and ${\times}CO=1$ atm.

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FeC2O4·2H2O의 열처리 조건이 Fe3O4-δ 형성에 미치는 영향 (Effects of Heat Treatment Conditions of FeC2O4·2H2O on the Formation of Fe3O4-δ)

  • 오경환;박원식;이상인;서동수
    • 한국재료학회지
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    • 제22권11호
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    • pp.620-625
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    • 2012
  • A general synthetic method to make $Fe_3O_{4-{\delta}}$ (activated magnetite) is the reduction of $Fe_3O_4$ by $H_2$ atmosphere. However, this process has an explosion risk. Therefore, we studied the process of synthesis of $Fe_3O_{4-{\delta}}$ depending on heat-treatment conditions using $FeC_2O_4{\cdot}2H_2O$ in Ar atmosphere. The thermal decomposition characteristics of $FeC_2O_4{\cdot}2H_2O$ and the ${\delta}$-value of $Fe_3O_{4-{\delta}}$ were analyzed with TG/DTA in Ar atmosphere. ${\beta}-FeC_2O_4{\cdot}2H_2O$ was synthesized by precipitation method using $FeSO_4{\cdot}7H_2O$ and $(NH_4)_2C_2O_4{\cdot}H_2O$. The concentration of the solution was 0.1 M and the equivalent ratio was 1.0. ${\beta}-FeC_2O_4{\cdot}2H_2O$ was decomposed to $H_2O$ and $FeC_2O$4 from $150^{\circ}C$ to $200^{\circ}C$. $FeC_2O4$ was decomposed to CO, $CO_2$, and $Fe_3O_4$ from $200^{\circ}C$ to $250^{\circ}C$. Single phase $Fe_3O_4$ was formed by the decomposition of ${\beta}-FeC_2O_4{\cdot}2H_2O$ in Ar atmosphere. However, $Fe_3C$, Fe and $Fe_4N$ were formed as minor phases when ${\beta}-FeC_2O_4{\cdot}2H_2O$ was decomposed in $N_2$ atmosphere. Then, $Fe_3O_4$ was reduced to $Fe_3O_{4-{\delta}}$ by decomposion of CO. The reduction of $Fe_3O_4$ to $Fe_3O_{4-{\delta}}$ progressed from $320^{\circ}C$ to $400^{\circ}C$; the reaction was exothermic. The degree of exothermal reaction was varied with heat treatment temperature, heating rate, Ar flow rate, and holding time. The ${\delta}$-value of $Fe_3O_{4-{\delta}}$ was greatly influenced by the heat treatment temperature and the heating rate. However, Ar flow rate and holding time had a minor effect on ${\delta}$-value.

Electrochemical determination of chloramphenicol using a glassy carbon electrode modified with dendrite-like Fe3O4 nanoparticles

  • Giribabu, Krishnan;Jang, Sung-Chan;Haldorai, Yuvaraj;Rethinasabapathy, Muruganantham;Oh, Seo Yeong;Rengaraj, Arunkumar;Han, Young-Kyu;Cho, Wan-Seob;Roh, Changhyun;Huh, Yun Suk
    • Carbon letters
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    • 제23권
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    • pp.38-47
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    • 2017
  • In this study, magnetite ($Fe_3O_4$) nanoparticles were electrochemically synthesized in an aqueous electrolyte at a given potential of -1.3 V for 180 s. Scanning electron microscopy revealed that dendrite-like $Fe_3O_4$ nanoparticles with a mean size of < 80 nm were electrodeposited on a glassy carbon electrode (GCE). The $Fe_3O_4/GCE$ was utilized for sensing chloramphenicol (CAP) by cyclic voltammetry and square wave voltammetry. A reduction peak of CAP at the $Fe_3O_4/GCE$ was observed at 0.62 V, whereas the uncoated GCE exhibited a very small response compared to that of the $Fe_3O_4/GCE$. The electrocatalytic ability of $Fe_3O_4$ was mainly attributed to the formation of Fe(VI) during the anodic scan, and its reduction to Fe(III) on the cathodic scan facilitated the sensing of CAP. The effects of pH and scan rate were measured to determine the optimum conditions at which the $Fe_3O_4/GCE$ exhibited the highest sensitivity with a lower detection limit. The reduction current for CAP was proportional to its concentration under optimized conditions in a range of $0.09-47{\mu}M$ with a correlation coefficient of 0.9919 and a limit of detection of $0.09{\mu}M$ (S/N=3). Moreover, the fabricated sensor exhibited anti-interference ability towards 4-nitrophenol, thiamphenicol, and 4-nitrobenzamide. The developed electrochemical sensor is a cost effective, reliable, and straightforward approach for the electrochemical determination of CAP in real time applications.

옥천대에 대한 고자기 연구: 예미지역 고생대 지층의 잔류자기 (Palaeomagnetism of the Okchon Belt, Korea: Paleozoic Rocks in Yemi Area)

  • 김인수;김성욱;최은경
    • 자원환경지질
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    • 제34권4호
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    • pp.355-373
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    • 2001
  • 옥천비변성대내 예미지역 23개지점으로부터 총 256개의 정향 코어시료를 채취하여 잔류자기 연구를 실시하였다. 연구지역은 태백과 영월사이의 두위봉형 퇴적지역이며 지리적 중심좌표는 37.18$^{\circ}$N, 128.61$^{\circ}$E이다. 일부 시료들에서는 교류 자기세척이 효과를 발휘하였으나 대부분의 경우 고온 열 세척이 특성잔류자기를 추출하는 주요 수단이었다. 캄브리아기 지층(화절층)의 특성잔류자기는 현재자기장 방향과 다르며 100%의 지층경사보정에서 최대의 군집을 이루어 1차잔류자기의 가능성을 제시하였으나 통계학적 습곡검사를 통과하지는 못하였다. 오도비스기 지층 (막골석회암, 고성석회암)의 경우에는 잔류자기 강도가 매우 낮았으며 또한 심하게 재자화되어 있었다. 석탄기 지층(홍점통)의 특성잔류 자기는 습곡검사와 역자화검사를 통과하는 습곡이전의 1차잔류자기이었는데 교류 세척과 열 세척으로 나타난 각각의 안정 잔류자기 방향이 서로 일치를 보여서 1차잔류자기라는 확신을 굳혀주었다. 이 석탄기 지층(홍점통)의 특성잔류자기는 습곡검사와 역자화검사를 통과하는 습곡이전의 1차잔류자기이었는데 교류 세척과 열 세척으로 나타난 각각의 안정 잔류자기 방향이 서로 일치를 보여서 1차잔류자기라는 확신을 굳혀주었다. 이 석탄기 지층의 특성잔류자기는 한노두에서도 지층의 상하부에 따라 방향이 상당히 다르게 나타나는데 이는 홍점통이 퇴적되는 동안 지구의 자극이 이동되었던 데에 기인한 것으로 해석된다. 석탄기 지층을 상하부로 구분하여 평균 특성잔류자기 방향을 산출하고 이로부터 고자기학적 북극의 위치를 구하여 중국의 것과 비교하면 북중국지괴(NCB)의 것과 매우 유사한 반면 남중국지괴(SCB)의 것과는 판이하게 다르다. 따라서 예미지역은 석탄기동안에 북중국지괴의 일부였거나 최소한 이에 근접하여 있었음을 알 수 있다. 페름기 지층(사동통, 고방산통)으로부터는 현재자장방향으로 재자화된 습곡이후의 2차잔류자기만이 검출되었다.

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밀양소분지 건천리 일원의 백악기 암석에 대한 고자기 연구 (Palaeomgnetic Study on the Cretaceous Rocks in the Konchonri Area of the Northern Milyang Subbasin, Korea)

  • 강희철;김인수;윤성효
    • 지구물리
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    • 제3권1호
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    • pp.1-12
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    • 2000
  • 경상분지내 밀양소분지의 건천리 지역에 분포하는 백악기 하양층군의 송내동층, 채약산화산암, 건천리층, 그러고 유천층군 하부인 주사산안산암을 대상으로 지층생성 당시의 자북의 위치와 퇴적시기를 결정하기 위하여 12개 노두에서 106개의 정향시료 채취하여 고자기 연구를 수행하였다. 연구결과 주 자성광물인 적철석과 자철석에 의하여 기록된 이들 지층들의 평균 특성잔류자기 방향은 역전검사 그리고 통계학적으로 99%의 신뢰도를 가지며 습곡검사 통과하였다. 단계적 습곡검사에서는 군집지수 k값의 변화가 90%의 지층경사보정 단계에서 최대를 보여서 이들 지층들의 특성잔류 자기는 지층경사나 습곡작용 이전 즉, 퇴적 동시기이거나 그 직후에 획득된 1차 잔류자기임을 지시한다. 이들의 평균 방향과 고자기극의 위치는 각자 $D=22.9^{\circ},\;I=59.1^{\circ}\;(k=410,\;{\alpha}_{95}=3.0^{\circ},\;N=7sites)$$199.6^{\circ}E,\;71.6^{\circ}N\;(K=206.9,\;A_{95}=4.2^{\circ})$이다. 이는 중국대륙 및 경상분지내 다른 동시대 지층들에서 구한 방향들과 오차한계 내에서 동일한 것으로서 연구지역과 이들 지역간에 상대적 변위나 수평회전운동이 거의 없었음을 지시한다. 자기층서학적 견지에서 볼 때, 연구지층들은 백악기 상부 알비안(upper Albian)에서 하부 캄파니안(lower Campanian)의 역자극기까지의 것으로 대비된다. 한편, 채약산화산암과 주사산안산암의 응회암과 및 각력암에서는 분산된 특성잔류자기 방향이 나타났는데 이는 암석들이 잔류자기를 획득한 후에 화산함몰 구조운동에 의하여 재동(reworked)되었음을 의미한다.

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