• Title/Summary/Keyword: 점토 물질

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Assessment of the Wetland Soil Development in Constructed Wetlands using the Soil Properties of a Reference Wetland (기준습지 토양특성을 활용한 인공습지의 토양발달 평가)

  • Lee, Ja-Yeon;Kang, Dae-Seok;Sung, Ki-June
    • Journal of Wetlands Research
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    • v.12 no.1
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    • pp.1-14
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    • 2010
  • Changes in wetland soil properties of two constructed wetlands after their constructions were compared to those of a natural wetland to determine if they could be used for the evaluation of the success of constructed wetlands and the assessment of their functions. One natural wetland as a reference wetland and two constructed wetlands(treatment wetland and experimental wetland) with different contaminant inflow characteristics were selected for this study. Major physicochemical properties of wetland soil such as soil texture, water content, pH, CEC(cation exchange capacity), organic matter content, total nitrogen, and available phosphorus were monitored to investigate the effects of inundation and accumulation of organic matters and nutrients on the wetland soil development. There was a clear difference in soil texture between the natural wetland and the constructed ones, with the high sand content in the constructed wetlands as compared to the high clay content in the natural one. Gradual increases of silt and clay contents over time were observed in the constructed wetlands. The soil of the natural wetland was higher in water content and organic matter but lower in pH than those of the constructed wetlands. The pH of the constructed wetlands reached near neutral ranges after initial increase. CEC and nutrient concentrations of the constructed wetlands seemed to be affected mainly by outside inflows of organic matter and contaminants. Concentrations of organic matter and nutrients decreased over time in the experimental wetland where surface and deep soils with different characteristics were mixed during its construction, suggesting that changes in soil properties during wetland constructions may affect the development of wetland soils or wetland biogeochemistry. This study showed that changes in physicochemical properties of soils in constructed wetlands could be used to assess the success of constructed wetlands and their functions, and also the importance of reference wetlands for the appropriate assessment.

Effects of Soil Components Flowed from Upper Banbyun Stream on Turbidity of Imha Reservoir (반변천 상류지역 토양성분의 유입이 임하호 탁도에 미치는 영향)

  • Seo, Eulwon;Kim, Younjung;Hwang, Haeyeon;Kim, Hyunmc;Baek, Seungcheol;Kim, Jongsik
    • Journal of the Korean GEO-environmental Society
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    • v.7 no.4
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    • pp.35-41
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    • 2006
  • This paper analyzed elution and ingredients of soil components which consist of soil and rocks in 6 regions in Yeongyang and Cheongsong to identify substantial matters that cause muddy water in Imha reservoir. We identified that more than 80% of major ingredients in collected soil and rocks are vermiculite(V), illite(I), kaolinite(Ka), quartz(Q), feldspar(F). Sodium and calcium are eluted in large quantities from soil of Sanseong and Cheongki. When calcium is in contact with water, much ions are eluted rapidly. We confirmed these ions are alkali minerals rising pH. We consider clay components distributed in Yeongyang as major cause of muddy water and rising pH of Imha reservoir because its ingredient calcite easily is dissolved in rainwater and splits other mineral particles into ${\mu}m$ sized particles.

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Evaluation of Fly Ash as an Alternative to Clay Liner Material in Landfills (플라이애쉬의 차수 및 오염물 차단 능력 평가 연구)

  • Jeong, Mun-Gyeong;Hyeon, Jae-Hyeok;Kim, Seung-Hyeon
    • Geotechnical Engineering
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    • v.14 no.5
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    • pp.191-204
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    • 1998
  • The feasibility of fly ash was evaluated as an alternative liner material to the conventional clay liner of landfills through modeling and laboratory experiments. In order to consider the effect of unsaturation on water flow through the liner, analyses were made to compare flow characteristics in saturated liner with that of unsaturated one. Contaminant migration characteristics in liners were investigated by batch experiment and modeling, in which phenol was employed as a model was solved by numerical techniques of finite difference method and predictor-corrector method to deal with high non-linearity. Sequential method was used to handle the system of differential equations. Results show that the alternative liner material is more capable of cutting off water flow in unsaturated condition and in preventing phenol from passing through it. It can be seen that, under the flow conditions considered in this study, the conventional saturation approach underestimates the amount of water passing through the liner and doers the cut-off capability against phenol significantly.

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Evaporation of Volatile Chlorinated Hydrocarbons in Soils (토양의 휘발성 염화 탄화수소 화합물 증발)

  • Lee, Junho;Park, Kapsong
    • Journal of Korean Society on Water Environment
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    • v.24 no.1
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    • pp.78-85
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    • 2008
  • Evaporation of selected toxic volatile chlorinated hydrocarbons was studied in laboratory soil columns. The evaporation values were obtained for the ten volatile chlorinated hydrocarbons at two different temperatures ($12^{\circ}C$ and $21^{\circ}C$) from columns filled with silty clay loam and sandy loam soils. 1,1,1-Trichloroethane, trichloroethylene and chloroform evaporated considerably (36.7~54.6% removal), carbon tetrachloride, 1,2-dichlorobenzene, tetrachloroethylene, 1,3-dichlorobenzene, dichlorobromethane and dibromochloromethane to a lesser extent (15.3~39.3% removal), and bromoform evaporated poorly (<10 percent removal) at both temperature. Volatile chlorinated hydrocarbons concentration did not affect evaporation, no statistically significant difference in evaporation between the soil types was found. However, temperature affected evaporation, the effect of concentration on the evaporation was not conclusive.

The Variation of Density and Settlement for Contaminated Sediments During Electrokinetic Sedimentation and Remediation Processes (오염퇴적토에 대한 동전기적 침전 및 정화 공정에서의 시료 밀도 및 침하 변화 특성)

  • Chung, Ha-Ik
    • Journal of the Korean Geotechnical Society
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    • v.22 no.9
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    • pp.5-14
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    • 2006
  • Generally, the sediments contain significant water, clay, colloidal fraction and contaminants, and can result in soft strata with high initial void, and its potential hazards in subsurface environments exist. Electrokinetic technique has been used in sedimentation for volume reduction of slurry tailing wastes and in remediation for extraction of contaminants from contaminated soils. In this research, the coupled effects of sedimentation and remediation of contaminated sediments are focused using electrokinetic sedimentation and remediation techniques from experimental aspects. A series of laboratory experiments including variable conditions such as initial solid content of the specimen, concentration level of the contaminant, and magnitude of applied voltage are performed with the contaminated sediment specimens mixed with ethylene glycol. Commercially available high specification Kaolin was used to simulate slurried sediment. From the test results, the settlement of specimen increases with increasing of applied voltage and decreasing of solid content and contamination level. The density of specimen increases due to settlement of specimen in the process of electrokinetic sedimentation and decreases due to extraction of organic contaminant in the process of electrokinetic remediation.

Electrokinetic Extraction of Heavy Metal from Clayey Soil : Desorption Characteristics During Electrical Treatment (중금속으로 오염된 점성토에서 동전기프로세스에 의한 탈착 특성)

  • Lee, Myung-Ho;Jang, Yeon-Soo
    • Journal of Soil and Groundwater Environment
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    • v.12 no.3
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    • pp.23-28
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    • 2007
  • A number of batch isotherm and electrokinetic experiments were conducted in order to investigate the migration of zinc and its removal efficiency during electrokinetic soil processing. Sorption and desorption characteristics of zinc spiked kaolin clay have been examined by comparison with electrically induced desorption and precipitation occurring in the anode and cathode regions, respectively. The removal efficiency of zinc under the applied voltage gradient of 300 V/m was found to be up to approximately 80 % within 4 hours of the electrokinetic treatment. The study is significant with respect to the remediation of contaminated areas.

The Application of Dual Function Organoclay on Remediation of Toxic Metals and Organic Compounds in Soil-Water System (양친매성 유기점토를 이용한 중금속과 유기 오염물질 동시제거 기술)

  • Ok, Yong-Sik;Lim, Soo-Kil;Kim, Jeong-Gyu
    • Korean Journal of Environmental Agriculture
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    • v.22 no.3
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    • pp.177-184
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    • 2003
  • Although clay can sorb significant amounts of inorganic contaminants from soils and wastewater, the hydration of exchangeable cations in clay minerals makes it hydrophilic at the clay mineral surfaces and interlayers. Thus, natural clays are often ineffective in complexing and stabilizing toxic organic contaminants in soils and groundwater environment. But, substituting these hydrated cations with cationic surfactant such as QAC(Quaternary ammonium Compound) can change the natural clay from hydrophilic to hydropobic. Furthermore functionalized organoclay can act as a powerful dual function sorbent for both toxic metals and organic compounds. It also can be used as landfill clay liners, slurry walls, nano-composite materials, petroleum tank farms, waste treatment, and filter systems. To use this modified clay minerals effectively, it is required to understand the fundamental chemistry of organoclay, synthetic procedures, its engineering application, bioavailability of sorbed ion-clay complex, and potential risk of organoclay. In this review, we investigate the use, application and historical background of the organoclay in remediation technology. The state-of-the-art of organoclay research is also discussed. Finally, we suggest some future implications of organoclay in environmental research.

Investigation on Flocculi-floc Interaction and Flocculation in Extracellular Polymeric Substances, Ionic Species and Clay-containing Suspension (생체고분자물질 농도와 이온강도에 따른 점토입자 현탁액의 응집핵-응집체 이군집 응집 특성 연구)

  • Kim, Jae In;Lee, Byung Joon
    • Journal of Korean Society on Water Environment
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    • v.36 no.3
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    • pp.185-193
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    • 2020
  • Bimodal flocculation describes the aggregation and breakage processes of the flocculi (or primary particles) and the flocs in the water environment. Bimodal flocculation causes bimodal size distribution with the two separate peaks of the flocculi and the flocs. Extracellular polymeric substances and ionic species common in the water environment increase the occurrence of bimodal flocculation and flocculi-floc size distribution, under the flocculation mechanisms of electrostatic attraction and polymeric bridging. This study investigated bimodal flocculation and flocculi-floc size distribution, with respect to the extracellular polymeric substance concentration and ionic strength in the kaolinite-containing suspension. The batch flocculation tests comprising 0.12 g/L of kaolinite showed that the highest flocculation potential occurred at the lowest xanthan gum (as extracellular polymeric substances) concentration, under all the ionic strengths of 0.001, 0.01, and 0.1 M NaCl. Also, it was important to note that the higher ionic strength resulted in the higher flocculation potential, at all the xanthan gum concentrations. The bimodal flocculation and flocculi-floc size distribution became apparent in the experimental conditions, which had low and intermediate flocculation potential. Besides the polymeric bridging flocculation, steric stabilization increased the flocculi mass fraction against the floc mass fraction, thereby developing the bimodal size distribution.

Characteristics of Brick with Slag Produced from Coal Gasifier (가스화기 발생 슬랙을 활용한 벽돌제조 특성)

  • Kim, Na-Rang;Chung, Seok-Woo;Yun, Yong-Seung
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.808-811
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    • 2007
  • 본 연구는 3톤/일급 이하 가스화 용융로에서 $1,400{\sim}1,500^{\cdot}C$, $7.5{\sim}8.0$ kg/$cm^2$의 안정적인 운전조건일 때, 시료로 Kideco 탄을 사용하고 이때 발생한 슬랙의 특성 및 슬랙의 재활용을 위한 벽돌제조 특성을 고찰하였다. 발생된 슬랙은 $Fe_2SiO_4$$SiO_2$가 결정상태로 일부 존재하거나, 중금속들이 결합되어 엉킨 구조인 비결정상태의 치밀한 형태로 이루어져 있었으며, 잔존탄소 함량이 0.06%로 미량 존재하였다. 또한 슬랙에는 중금속 농도가 Kideco탄보다 고농도로 존재하지만, 용출되는 중금속의 농도는 매우 낮아 환경적으로 안정한 물질로서 재활용이 가능한 특성을 지니고 있다. 슬랙 첨가 점토벽돌의 적합성을 평가하기위해 슬랙을 0%, 10%, 30% 첨가하여 벽돌을 제조하고 KS 산업규격에 따라 시험을 실시하였다. 분석결과 슬랙을 첨가할수록 제조한 벽돌의 흡수율이 낮아져 기존 제품에 비하여 우수한 것으로 측정되었다. 또한 압축강도와 휨강도는 기존 제품의 $80{\sim}86%$ 정도인 것으로 측정되었지만 KS 산업규격의 기준치보다 높은 수치를 나타내였고, 내산성, 내알칼리성, 열충격강도 또한 양호한 것으로 나타나, 슬랙을 이용하여 벽돌로 재활용하여 충분히 사용 가능한 것으로 확인되었다.

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A Study of Characteristics of Total Sediment in the Stream (중소하천에서의 유사특성에 대한 연구)

  • Choi, Gye-Woon;Seo, Jong-Ok;Jang, Yeon-Gyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.933-937
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    • 2008
  • 유사(sediment)란 지각의 풍화작용에 의해 생성되어 유수나 바람 등에 의해 침식, 이송, 퇴적된 물질을 말하며, 일반적으로 하천유사(fluvial sediment)를 말한다. 유사의 크기는 작게는 미세한 점토입자부터 크게는 자갈에 이르기까지 매우 다양하며, 하천에서의 소류사량과 부유사량을 포함한 총유사량의 추정은 하천유사 문제의 기본이며 하천내의 수리구조물의 설계 및 유지관리, 하천개수 및 하도의 안정, 홍수터 관리, 저수지의 설계 및 운영 등 수자원 개발 및 관리를 위한 하천계획에 필요한 기본적 요소 중 하나이다. 본 연구에서는 중소하천에서의 실측을 통한 유사산정을 위해 대상하천에서 각 유량에 따른 부유사를 채취하여 시료분석을 통한 결과와 대상하천의 수리특성을 분석하여 총유사량의 산정 및 분석을 하였다. 이를 위하여 대상하천에 대하여 알맞은 측정조사지점을 선정하여 15회에 걸쳐 현장측정을 시행하였으며, 현장 측정시 유량측정을 위한 수위 및 유속을 측정하였고, 부유사농도 및 부유사입도분석을 위한 시료를 채취하여 실내 실험시 SS분석 및 BW관 분석을 시행하였다. 대상하천의 현장실험 측정성과와 수리특성을 기초자료로 하여 각 회차에 걸친 총유사량의 산정을 하였으며, 총유사량의 산정은 총유사량 추정 방법들인 직접 실측에 의한 방법, 간접계산에 의한 방법, '실측+계산'에 의한 방법 중 신뢰도가 높으며 경제성이 높은 '실측+계산'에 의한 방법과 간접계산에 의한 방법을 사용하는 공식으로 산정하였다. 결과들의 비교와 대상하천의 수리특성들에 대한 연구를 통해 적정공식을 선정하고 공식의 선정 원인에 대한 연구를 시행하였다.

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