• 제목/요약/키워드: Silt and clay

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국내 화강암류를 이용한 일부 인공쇄석사 제조과정에서 생기는 스러지의 광물.물리화학적 특성 (Mineralogical and Physico-chemical Properties of Fine fractions Remained after Crushed Sand Manufacture)

  • 유장한;안기오;장준영
    • 한국광물학회지
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    • 제19권4호
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    • pp.355-361
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    • 2006
  • 국내에서 인공쇄석사의 점유율은 30% 이상이며 계속적인 증가추세에 있다. 국내 인공쇄석사는 주로 화강암류를 그 원암으로 이용하고 있다. 인공모래 제조공정 중에 생기는 스러지(63마이크론 이하입자)는 침전제를 이용하여 분리하며, 그 양은 중량비 15% 내외이다. X-선 회절분석에 의하면 스러지 구성광물은 석영, 장석류가 3/4 이상을 차지하며, 그밖에 방해석 등과 각종 점토광물류를 포함한다. 점토류 중에는 운모 및 고령토류가 우세하고, 녹니석, 질석과 함께 스멕타이트류도 포함된다. 쥬라기 화강암류에서 발생되는 스러지는 대체적으로 백악기의 것에 비해서 더 많은 고령토류, 녹니석 및 질석류를 포함한다. 화학조성에 있어서도 화강암류와 스러지의 사이에 명확한 차이를 보여준다. $SiO_2$$Na_2O$ 성분 외에는 스러지가 화강암 원석류보다 더 높은 함량을 나타내어, 그들이 풍화작용에 의한 증가임을 나타낸다. 스러지에 대한 입도분석에 의하면, 토양조직 분류에서의 Silt loam 정도에 해당하며, 변수두 투수실험에 의해 측정된 수리전도도에 의하여서도 silt 및 sand가 우세하게 포함된 특성을 나타낸다. 이와 같이, 현재 우리나라에서 버려지고 있는 스러지는 silt 및 점토입자함량에 의하여 불투수성을 야기하므로 산업폐기물로 간주되어 환경오염물로 분류되고 있다.

설악산 토양 내 황사의 퇴적과 풍화 (Dust Deposition and Weathering in Soils of Seoraksan)

  • 정기영
    • 광물과 암석
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    • 제34권4호
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    • pp.255-264
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    • 2021
  • 한반도는 황사의 이동 경로에 있으나, 풍화와 침식이 활발한 산악 지형에서 황사의 퇴적을 확인하기는 어렵다. 이 연구에서는 설악산 알칼리장석화강암 토양의 세립실트(< 20 ㎛)에 점토광물 특성, 광물조성, 미세조직 분석을 실시하여 산악지역 토양 내 황사퇴적물의 존재 상태를 조사하였다. 이 지역 토양 세립실트는 기반암 유래 쇄설성 입자, 황사퇴적물, 그리고 이들의 풍화물로 구성되어 있다. 토양 내 황사기원 광물로 2:1 층상규산염, 녹니석, 각섬석, 녹염석, 함칼슘사장석이 확인되었다. 기반암인 알칼리장석화강암은 석영과 알칼리장석으로 구성되며, 알칼리장석 중 앨바이트가 부분적으로 풍화되어 소량의 깁사이트와 고령토 광물이 생성되었다. 산성토양환경에서 일라이트-스멕타이트 계열 2:1 층상규산염의 팽윤성 층간에 다핵 Al 양이온 종들이 교환 및 고정되어 히드록시-Al삽입점토광물이 생성되었다. 2:1 층상규산염 총량을 기준으로 평가하면 조사한 토양 세립실트 내 황사의 양은 70% 정도로 추정된다.

The Mineralogy and Geochemistry of the Uppermost Sediments of the Lake Hovsgol, North Mongolia : It's Implication to the Paleoenvironmental Changes

  • Tumurhuu, D.;Narantsetseg, Ts.;Ouynchimeg, Ts.
    • 한국제4기학회지
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    • 제18권2호통권23호
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    • pp.3-3
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    • 2004
  • One short core with length of 146cm(HB-107, at coordinates of $N51^{\circ}$11'37.5";$E100^{\circ}$24'45.6", from 229m water depth was subject of the present study. The sub-samples of the core were analyzed for the water contents (WC%), biogenic silica, identification of the main phases, grain size distribution, geochemistry and some physical properties of sediment(Wet density and Magnetic susceptibility) with aims of recording palaeo-environmental changes in Northem Mongolia. The evaluation of the geochemical and mineralogical proxies on palaeo-climated and palaeo-environmental changes are based on comparison to the behvior of biogenic silica through core, as later one had been showed itself, as good indicator of the climate and environmental fluctuation. Age model of the investigating core based on previously C 14 dated core HB105 taken from the central part of the Hobsgol Lake and the result had been published elsewhere. The core consists of two litological varieties : upper diatomaceous silt, lower clay. According to the age model the upper diatomaceous silt formed during the Holocene, lower caly-during the late Pleistocene glacial period. The geochemistry and phase identification analysis on the core samples are resulted in determining main minerals that form the bottom sediments and their geochemistry. The main include quartz, felspar, muscovite, clinochlore, amphibole and carbonate phase(dolomite and calcite). Through the core not only occur the relative quantitative changes of the main phases, but also happen that the carbonate phase completely disappear in diatomaceous silt. This is believed to be related to the lake water salinity changes, which occurred during the trassition period from Pleistocene glacial-to the Holocene interglacial. These abrupt changes of the mineralogy have been clearly traced in geochemistry of sediments, specially in calcium concentration, which is high in lower clay and low in upper diatomaceous silt. That means, geochemistry and mineralogy of the bottom sediments can be used as proxy data on palaeo-climate and palaeo-environmental changes.

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황해와 한국연안해역 표층퇴적물중 Sb과 As의 농도분포특성 (The distribution characteristics of Sb and As in the surface sediment from the Yellow Sea and the coastal areas of Korea)

  • 황동운;;양한섭
    • 한국환경과학회지
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    • 제12권10호
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    • pp.1121-1129
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    • 2003
  • We report the distributions of Sb and As in the surface sediment of the Yellow Sea and the coastal areas of Korea. The mean concentrations of Sb and As range from 0.68 ppm to 1.01 ppm and from 7.4 ppm to 15.8 ppm, respectively, and show relatively the high concentrations at the coast of Weolseong in the East Sea for Sb and at the coast of Gadeok Island in the South Sea far As. This may be due to the anthropogenic input of these elements via river and atmosphere from industry complex and agriculture regions around the study areas. Because of the difference of clay to silt proportion, the correlation between silt plus clay contents and Sb, As in the coastal surface sediment of Korea is not shown, the concentrations of Sb and As vary widely for the sample in which the silt plus clay contents are the same. Therefore, we suggest that the distribution patterns of Sb and As in surface sediment of the Yellow Sea and the coastal areas of Korea are mainly controlled by the anthropogenic inputs and the sediment characteristics. On the other hand, the Sb concentrations are lower than those of the lowest effect level which is the standard of judgment for contamination, while the As concentrations are higher than those of the lowest effect level. This implies that the surface sediments of the Yellow Sea and the coastal areas of Korea are considerably contaminated for As.

대천항 퇴적물의 유기물 및 중금속 분포 특성 (Distribution Characteristics of Organic Matter and Heavy Metal of Sediment in Daecheon Port)

  • 신우석;임지윤;윤영관
    • 한국수처리학회지
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    • 제26권6호
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    • pp.43-51
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    • 2018
  • In order to systematically and scientifically manage the organic and heavy metals against sediment at Daecheon Port, this study conducted particle composition, organic materials and heavy metals irradiation studies of sediments. Analysis of the grain size composition of sediments in the target study area showed the distribution characteristics of the mix of sand, silt and clay. That is, Station C (Stn. C) showed superior by fine-grained sediment, Station A and B (Stn. A and B) showed superior by coarse-grained sediment. The organic matter(COD, TOC, and IL) of Stn. C was appeared to be heavily polluted more than Stn. A and B. These data for the spatial properties in sediment showed that organic matter was related positively to the sediment silt-clay content. Also, in the case of heavy metals contamination in surface sediments, Stn. C was higher than Stn. A and B. Particularly, at the Stn. C, high organic matter concentration and C/N ratio value( >10) indicated that the sediment was composed highly of land-derived organic matter. From these results, it considered that the correlation analysis among to silt-clay, organic matter and heavy metal was found to have a good interrelationship.

서해안 간척지 토성과 탈염 (Soil Texture and Desalination after Land Reclamation on the West Coast of Korea)

  • 민병미;김준호
    • The Korean Journal of Ecology
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    • 제20권2호
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    • pp.133-143
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    • 1997
  • From 1984 to 1989 reclaimed coastal lands in Choongnam Province of the western coast of Korea were studied for soil texture at three sites(Daeho, Hyundai A and Hyundai B) and for desalination one site(Hyundai B). The soil textures of varied sites in Hyundai A were horizontally similar and composed of 39-40% clay, 40-49% silt and 8-14% sand. But those in Da돼 and Hyundai B differed horizontally in the same area and vertically at the same site. Soil texures of Da돼 were composed of 15-17% clay, 30-45% silt and 40-55% sand and those of Hyundai B were composed of 22-45% clay, 26-49% silt and 17-31% sand. The measured electrical conductivity(EC), which represents whole salt content of the reclaimed soil, decreased year by year. The vertical distribution of the EC changed temporally and spatially in the upper zone above a 50 cm depth but not in The lower zone below a 50 cm depth. The EC valus of the soil were inversely proportional to the magnitued of annual precipitation, evaporation and the numbers of rainy days with r equalling -0.97. But the annual decrease of the EC was directly proportional to climatic factors with r=0.7. Salt in the reclaimed land was leached out by the percolative action of surplus rain water, or moved up by evaporation and carried away by running rain water. The running out of the salt on the soil surface was most efficiently carried out over 10 mm precipitation per day.

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산사태 발생지역에서의 지질조건별 토질특성 (Soil Properties regarding Geological Conditions in Landslides area)

  • 송영석;김원영;채병곤;김경수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.884-889
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    • 2005
  • A lot of landslides were occurred in Gangnung, Macheon and Geochang areas by Typhoons such as RUSA(2002) and MEAMI(2003). Soil properties of these areas are investigated regarding geological conditions in this study. The shallow plane failure were occurred in Gangnung and Geochang areas, whereas the deep circle failure were occurred in Macheon area. The matrix in Gangnung and Geochang areas was composed of Granite, and the matrix in Macheon area was composed of Gabbro. The disturbed and undisturbed soils were sampled in these areas. As the results of laboratory tests using sampled soils, the coefficient of permeability in Granite region is lower than that in Gabbro region. In the cases that the silt and clay contents are included less than 4% for the soils of Granite region and less than 7% for the soils of Gabbro region, the coefficients of permeability are rapidly increased for both soils. In addition, the simple equations for predicting the coefficients of permeability are proposed using the effective particle size and the silt and clay contents according to geological condition.

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갯벌의 수직적 환경 특성 (The vertical environmental characteristics in the tidal flat sediments)

  • 김종구;유선재
    • 한국환경과학회지
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    • 제9권2호
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    • pp.125-129
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    • 2000
  • As one of the fundamental survey to evaluate purification capacity of pollutants at the tidal flat sediments, we studied vertical environmental characteristics in three tidal flat sediments, Chunjangdae, Eueunri and Gyewhado. These are dissmilar to external feature in each other. The results of this study may be summarized as followed; As the results of particle analysis, Eueunri tidal flat fediment located in Keum river estuary consists of 98.98% as silt & clay, Chunjangdae tidal flat sediment located in SeocheonGun consists of 97.99% as sand. And Gyewhado tidal flat sediment located in Saemankeum in Saemankeum area consists area consists of 32.81% as silt & clay and 67.19% as sand. The concentration of organic pollutants(I.L., COD, POC, PON) in Eueunri tidal flat sediment which highly content of silt & clay were 3~4 times higher than others. The concentration of organic pollutants at each layer were slightly increase goes with deepen layer. The linear correlation between I.L. and COD, POC, PON were obtained. Correlation coefficients were in range of 0.821~0.940. Also the correlation between pH and COD, POC, PON were high(>r=0.9). Filteration rate in Chunjangdae tidal flat sediment was 0.01584cm/s as mean value, but the other were almost nothing filtered off.

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토양의 침식과 보존에 관한 이론적 분석 4. 삼림토양의 침식과 유실기구 (The Theoretical Analyses of the Soil Erosion and Conservation 4. Erosion and Leaching Mechanism of the Forest Soils)

  • 장남기
    • 아시안잔디학회지
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    • 제10권1호
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    • pp.49-59
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    • 1996
  • This report is researched on the cause and mechanism of soil erosion in comparison among Kwangnung, Mt. Kaya, Mt. Chili, and Mt. Soorak by physical and chemical analyses of their for- est soils. Clay, silt, and fine sand of Mt. Soorak are far less than those of Mt. Chili, Mt. Kaya, and Kwangnung area while coarse sand is very high level. The clay ratio of soil at Mt. Soorak is the most high level in comparison with that of other area. Denudation at Mt. Soorak, therefore, is cause of erosion by the result of transportation of soil particles. The eroding velocity increase for larger particle size and stronger cohesion between soil particles. Very fine sand, silt, and clay can be present in suspension near the bottom and the size of the particles in suspension depends upon the velocity of the current near the bottom and the roughness of the bottom. Key words: Theoretical analyses, Soil erosion and conservation, Forest soils.

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Experimental study on modified low liquid limit silt for abutment backfill in bridge-embankment transition section

  • Shu-jian Wang;Yong Sun;Zhen-bao Li;Kai Xiao;Wei Cui
    • Geomechanics and Engineering
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    • 제32권6호
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    • pp.601-613
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    • 2023
  • Low liquid limit silt, widely distributed in the middle and down reaches of Yellow River, has the disadvantages of poor grading, less clay content and poor colloidal activity. It is very easy to cause vehicle jumping at the bridge-embankment transition section when the low liquid limit silt used as the backfill at the abutment back. In this paper, a series of laboratory tests were carried out to study the physical and mechanical properties of the low liquid limit silt used as back filling. Ground granulated blast furnace slag (GGBFS) was excited by active MgO and hydrated lime to solidify silt as abutment backfill. The optimum ratio of firming agent and the compaction and mechanical properties of reinforced soil were revealed through compaction test and unconfined compressive strength (UCS) test. Scanning electron microscope (SEM) test was used to study the pore characteristics and hydration products of reinforced soil. 6% hydrated lime and alkali activated slag were used to solidify silt and fill the model of subgrade respectively. The pavement settlement regulation and soil internal stress-strain regulation of subgrade with different materials under uniformly distributed load were studied by model experiment. The effect of alkali activated slag curing agent on curing silt was verified. The research results can provide technical support for highway construction in silt area of the Yellow River alluvial plain.