• Title/Summary/Keyword: 캐올리나이트

Search Result 41, Processing Time 0.019 seconds

7$\AA$ Phase in the Sancheong Kaolin : 7$\AA$-Halloysite or Kaolinite\ulcorner (산청 고령토중의 7$\AA$ 상에 대한 연구 : 7$\AA$-할로이사이트 또는 캐올리나이트\ulcorner)

  • 정기영;김수진
    • Journal of the Mineralogical Society of Korea
    • /
    • v.2 no.1
    • /
    • pp.18-25
    • /
    • 1989
  • The X-ray diffraction and electron microscopy study of the kaolin sample from Sancheong area show that the halloysite occurs as hydrated 10$\AA$ form. It implies that the 7$\AA$ reflection and hk-line splitting in the X-ray diffractogram are ascribed to kaolinite. Kaolinite in Sancheong kaolin is of a disordered type. It tends to be enriched in the colored part of kaolin samples. Quantitative analyses show that kaolin contains 16-57% halloysite and 10-55%kaolinite.

  • PDF

Dyeing of Cotton Fabrics with Loess Using Soybean Milk - The Compositions of Loess Deposited on the Cotton Fabrics - (콩즙을 이용한 면직물의 황토염색 -면직물에 부착된 황토의 성분분석을 중심으로-)

  • Kim, Soo-Jung;Ryu, Hyo-Seon
    • Journal of the Korean Society of Clothing and Textiles
    • /
    • v.25 no.10
    • /
    • pp.1770-1778
    • /
    • 2001
  • 황토는 대표적인 천연 무기염재의 일종으로서 바람에 의해 운반되어 퇴적된 담황색 내지는 황회색을 띠는 실트질의 퇴적물을 일컫는다. 황토의 구성물질은 주로 석영, 장석, 산화철광물, 깁사이트 등의 여러 가지 점토광물을 포함하는데, 주로 적색을 띠는 것은 소량의 산화철 광물에 기인되는 경우가 많으며 황토를 구성하는 점토광물로는 버미큘라이트, 카오린 광물인 캐올리나이트와 할로이사이트, 일라이트 등이 있다. 본 연구에서는 면직물에 천연 무기염재인 황토를 사용한 염색시에 황토 단독염색과 콩즙 전처리 후 황토염색으로 나누어 염색을 실시하고, 원료 황토와 황토염색 후 면직물에 부착된 성분 간에 차이가 있는지를 확인하기 위해 X선 형광분석(X-ray fluorescence analysis, XRF)을 이용하여 염색 전.후 황토의 성분을 분석하였고, X선 회절분석(X-ray diffraction analysis, XRD)을 이용하여 황토 및 염색 전 후 면직물에 부착된 광물질의 주성분을 분석하였으며, energy dispersive spectrometer (EDS)가 장착된 주사전자현미경을 이용하여 면직물에 부착된 광물의 성분을 조사하였다. 그 결과, 황토로 면직물을 염색하는 경우 면직물에 부착되는 황토의 양과 K/S 값은 거 의 비례하여 증가하는 것으로 나타났다. 황토 염색 후 면직물에 부탁되는 주성분은 주로 SiO$_2$, A1$_2$O$_3$, Fe$_2$O$_3$등인 것으로 나타났으며, X선 회절분석과 EDS분석에 의해 캐올리나이트, 일라이트 등의 점토광물의 형태로 존재하는 것이 확인되었다.

  • PDF

The Effect of Lattice Topology on Benzyl Alcohol Adsorption on Kaolinite Surfaces: Quantum Chemical Calculations of Mulliken Charges and Magnetic Shielding Tensor (캐올리나이트 규산염 층과 벤질알코올의 반응에 대한 양자화학계산에서 결정학적 위상이 멀리켄 전하와 자기 차폐 텐서에 미치는 영향)

  • Lee, Bum-Han;Lee, Sung-Keun
    • Journal of the Mineralogical Society of Korea
    • /
    • v.20 no.4
    • /
    • pp.313-325
    • /
    • 2007
  • In order to have better insights into adsorption of organic molecules on kaolinite surfaces, we performed quantum chemical calculations of interaction between three different model clusters of kaolinite siloxane surfaces and benzyl alcohol, with emphasis on the effect of size and lattice topology of the cluster on the variation of electron density and magnetic shielding tensor. Model cluster 1 is an ideal silicate tetrahedral surface that consists of 7 hexagonal rings, and model cluster 2 is composed of 7 ditrigonal siloxane rings with crystallographically distinct basal oxygen atoms in the cluster, and finally model cluster 3 has both tetrahedral and octahedral layers. The Mulliken charge analysis shows that siloxane surface of model cluster 3 undergoes the largest electron density transfer after the benzyl alcohol adsorption and that of model cluster 1 is apparently larger than that of model cluster 2. The difference of Mulliken charges of basal oxygen atoms before and after the adsorption is positively correlated with hydrogen bond strength. NMR chemical shielding tensor calculation of clusters without benryl alcohol shows that three different basal oxygen atoms (O3, O4, and O5) in model cluster 2 have the isotropic magnetic shielding tensor as $228.2{\pm}3.9,\;228.9{\pm}3.4,\;and\;222.3{\pm}3.0ppm$, respectively. After the adsorption, the difference of isotropic chemical shift varies from 1 to 5.5 ppm fer model cluster 1 and 2 while model cluster 2 apparently shows larger changes in isotropic chemical shift. The chemical shift of oxygen atoms is also positively correlated with electron density transfer. The current results show that the adsorption of benzyl alcohol on the kaolinite siloxane surfaces can largely be dominated by a weak hydrogen bonding and electrostatic force (charge-charge interaction) and demonstrate the importance of the cluster site and the lattice topology of surfaces on the adsorption behavior of the organic molecules on clay surfaces.

Synthesis of Kaolinte from Pyrophyllite by the Hydrothermal Reaction (엽납석으로부터 캐올리나이트 합성연구)

  • 장영남
    • Economic and Environmental Geology
    • /
    • v.32 no.4
    • /
    • pp.373-378
    • /
    • 1999
  • An investigation was conducted to find out formation and is mechanism of kaolinite from pyrophyllite under hydrothermal conditions. First, a pyropyllite sample from the Heenam district, Korea, was activated by heat-treating at $400^{\circ}C$ for 3 hrs. The kaolinite powder was successfully obtained by subjecting the dried feedstock to autoclaving at $200^{\circ}C$, 15atm, pH<1 for 5days with addition of 17.4mol/l $AlCl_3$. Evidently, the $AlCl_3$ addition as a mineralizer strongly promoted incorporation of $Al^{3+}$ ion into pyrophyllite structure which was subdequently converted into kaolinite. It also indicated that the formation of octahedral feed solution. The final pH of the solution was decreased to ~0.3. The transformation reaction was not noticeably accelerated when 10wt% natural kaolinite was added as the seeds, suggesting that the transformation was not reconstructional, but substitutional type.

  • PDF

Mineralogical Changes in the Weathering Profiles of Carnin Gneiss in the Yoogoo Area, Korea (유구지역 화강암질 편마암의 풍화작용에 의한 광물 조성의 변화)

  • 이석훈;김수진
    • Journal of the Mineralogical Society of Korea
    • /
    • v.13 no.3
    • /
    • pp.121-137
    • /
    • 2000
  • Weathering profiles which were developed under a temperate, humid environment and relatively steep geography, show a thick saprolite and soil horiaon in the Precambrian granitic gneiss of the Yoogoo area. In the weathering profiles, secondary minerals such as interstratified biotite/vermiculite, tri- or di-octahedral vermiculite, halloysite, kaolinite, illite, smectite, gibsite and geothite were observed. Kaolinization of biotite is the most prevalent mechanism but vermiculitization is a minor from all ofweathering profiles. Biotite altered to B/V mixed layer-vermiculite, to illite and to halloysite, kaolinite and gibbsite. Halloysite is the most frequently observed weathering product of biotite in these profiles. Goethite is observed at the around or opened fissures of altered biotite. Tubular halloysite aggregates was fDrmed from dissolution-precipitation of plagioclase. The occurrence of halloysite aggregates is divided into a preferentially oriented type and a wrinkled one which were resulted from the dissolved type of plagioclase. Fe-bearing minerals have also been subjected to dissolution leaving the precipitation of geothite along dissolution voids. The profile of granitic gneiss is a typical weathering pattern showing a clay minerals increase toward the surface. Weathering of minerals were controlled by locally acidic and good-drainage environment, and formed a various and complicated secondary minerals in this study area.

  • PDF

Mineralogical Changes Caused by the Weathering of Tailings Deposited on the Riverside of the Nakdong River, Bonghwa, Korea (봉화군 일대 낙동강변에 퇴적된 광미의 풍화에 따른 광물학적 변화)

  • Kim, Min-Jung;Kim, Yeong-Kyoo;Park, Hyoung-Sim;Jeon, Sang-Ho
    • Journal of the Mineralogical Society of Korea
    • /
    • v.21 no.4
    • /
    • pp.331-339
    • /
    • 2008
  • In the upstream of Nakdong river in Bonghwa-gun, Gyeongsangbuk-do, certain areas of riverside were found to be covered by weathered mine tailings which were assumed to be migrated and deposited by flood. This study was conducted to investigate the formation and characteristics of the secondary minerals from tailings and related leaching behavior of heavy metals in the severely weathered tailing deposits by river waters. Quartz, feldspar, micas, chlorite, hornblende, talc, pyroxene (johannsenite), pyrite, and calcite were identified as primary minerals by XRD. Kaolinite can be formed by the weathering of tailings, but considering the short period of weathering time, kaolinite in the deposits is considered to be from unweathered tailings or moved from soils. The secondary minerals such as goethite, gypsum, basanite, and jarosite were also identified. The formation of the secondary minerals was affected by the species of primary minerals and pH conditions. The weathering of pyrite produced sulfate minerals such as gypsum, basanite, jarosite, and also goethite. Mn oxide was also identified by SEM, coated on the primary minerals such as quartz. This Mn oxide was poorly crystalline and thought to be the weathering product of johannsenite (Mn-pyroxene). The Fe and Mn oxides are the main minerals determining the brown/red and black colors of weathered tailings. EDS results showed that those oxides contain high concentrations of Pb, Zn, and As, indicating that, in the river, the formation of Fe and Mn oxides can control the behavior and leaching of heavy metals by co-precipitation or adsorption.

A Study on Heavy metal Characteristics of Sediments and inflow Suspended Solid of Andong and Imha-Dam (안동댐과 임하댐 퇴적물 및 유입 부유물질의 중금속 특성 연구)

  • Seo, Jeong Min;Kim, Young Hun;Kwon, Hyuk Jin;Kim, Jeong Jin
    • Journal of the Mineralogical Society of Korea
    • /
    • v.32 no.2
    • /
    • pp.103-111
    • /
    • 2019
  • In this study, characteristics of sediments and suspended solids flowing into Andong and Imha Dam was analyzed by color, X-ray diffraction and ICP/MS analysis. The minerals of sediments and suspended solid consist mainly of quartz, albite, chlorite, illite and small amounts of montmorillonite and kaolinite. Unlike the Andong Dam, the Imha Dam sediments contain large amounts of calcite. Color of sediments and suspended solids varies from grayish brown to dark orange. The concentrations of major heavy metals of sediments and suspended solids in the Andong and the Imha Dam are higher than the US National Oceanic and Atmospheric Administration standard values. The concentration of heavy metals in sediments of Andong is higher than that of Imha Dam because concentration of heavy metals in the suspended solid flowing into Andong is higher than that of Imha Dam.

Triple-layer Surface Complexation Modeling on the Adsorption of cs-137 and Sr-90 onto Kaolinite: Effect of Groundwater Ions and pH (캐올리나이트의 셰슘-137 및 스트론튬-90 흡착에 대한 삼중층 표면복합반응 모델링: 지하수 이온성분 및 pH의 영향)

  • 정찬호;박상원;김수진
    • Journal of the Mineralogical Society of Korea
    • /
    • v.11 no.2
    • /
    • pp.106-116
    • /
    • 1998
  • The adsorption of Cs-137 and Sr-90 onto kaolinite in prescence of major groundwater cations (Ca2+, K+, Na+) with different concentrations was simulated by using triple-layer surface complexation model (TL-SCM). The site density (8.73 sites/nm2) of kaolinite used for TL-SCM was calculated from it's CEC and specific surface area. TL-SCM modeling results indicate that concentrations dependence on 137Cs and 90Sr adsorption onto kaolinite as a function of pH is best modeled as an outer-sphere surface reaction. This suggests that Cs+ and Sr2+ are adsorbed at the $\beta$-layer in kaolinite-water interface where the electrolytes, Nacl, KCl and CaCl2, bind. However, TL-SCM results on Sr adsorption show a discrepancy between batch data and fitting data in alkaline condition. This may be due to precipitation of SrCO3 and complexation such as SrOH+. Intrinsic reaction constants of ions obtained from model fit are as follows: Kintcs=10-2.10, KintSr=10-2.30, KintK=10-2.80, KintCa=10-3.10 and KintNa=10-3.32. The results are in the agreement with competition order among groundwater ions (K+>Ca2+>Na+) and sorption reference of nuclides (Cs-137>Sr-90) at kaolinite-water interface showed in batch test.

  • PDF

Oxidized Biotite in the Weathering Profile of Andong Cranite (안동화강암의 풍화단면에서 산출되는 산화흑운모)

  • 정기영;김혜빈
    • Journal of the Mineralogical Society of Korea
    • /
    • v.15 no.3
    • /
    • pp.183-194
    • /
    • 2002
  • Biotite and its weathering Products in the weathering Profile of Andong granite were examined using X-ray diffraction, chemical analysis, and electron microscopy. Major weathering product of biotite was oxidized biotite, which is decomposed into kaolinite in the upper part. Discrete vermiculite or hydrobiotite was not detected although minor vermiculite (5%) was randomly interstratified with oxidized biotite. Excess positive charge induced by iron oxidation was balanced by release of Fe (16%) and Mg (12%) from octahedral site and K (13%) from interlayer site. After slight chemical and structural modification induced by iron oxidation, oxidized biotite persists through the weathering profiles with partial decomposition in the upper part of the profile. Formation environments and dissolution experiments of oxidized biotite highly resistant to weathering are required to understand the elemental behavior in the surface environments on the biotite-bearing bedrocks.

Chemical Weathering of Glacial Debris of the Barton Peninsula of King George Island, South Shetland Islands, Antarctica: Microtextural Evidences (남극 사우스셰틀란드 킹죠지섬 바톤반도 빙하쇄설물의 화학적 풍화작용: 미조직학적 증거)

    • Journal of the Mineralogical Society of Korea
    • /
    • v.16 no.2
    • /
    • pp.181-189
    • /
    • 2003
  • Diverse microtextures and secondary minerals formed by chemical weathering were observed in the glacial debris of King George Island. Weathering rind was observed in the block of basaltic andesite tuff due to dissolution of calcite producing voids. Eolian volcanic glass altered to mixtrure of allophane-like materials and iron oxyhydroxides at grain edges with relative concentration of Al. Fe, and Ti. Biotite in granodiorite area was transfarmed to vermiculite and interstratified biotite-vermiculite or very rarely to kaolinite and gibbsite. Pyrite in the hydrothermal alteration zone was repalced by iron oxides, resulting in sulfuric acid which locally accelerated alteration of chlorite to expandable clay minerals. Weathering of plagiociase and K-feldspar was negligible. Although glacial debris of the Barton Peninsula has undergone weak chemical weathering with formation of some secondary minerals, massive formation of smectite, abundant in nearby marine sediments, didn't occur.