• 제목/요약/키워드: and Capping effect

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Capping 기술을 이용한 하천 및 호소 퇴적토의 인 용출 저감 효과 분석 (Analysis on the Reduction of Phosphorus Release in River and Lake Sediments through Application of Capping Technology)

  • 김석구;윤상린
    • 대한환경공학회지
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    • 제36권11호
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    • pp.781-790
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    • 2014
  • 유속이 약한 하천이나 호소에 침강된 유기물, 영양염류, 유해화학물질 등의 오염물질은 일단 수중으로부터 제거되어 퇴적물 속에 축적되었다가 확산, 재 부유, 생물교란 등의 물리 화학 생물학적 과정에 의해 다시 수층으로 용출되어 수질 및 수생생태에 직 간접적인 악영향을 미칠 수 있게 된다. 특히 인은 수중생태계의 일차 생산량을 결정하는 중요한 물질중의 하나로 수체 내 물질순환 과정에서 주로 퇴적물에 저장되는 원소로 물리적인 교란 및 생 화학적 작용에 의해 수층으로용출되어 부영양화현상을 가속시키는 것으로 알려져 있다. 본 연구에서는 수층 미생물의 영향을 고려한 경우(호소수)와 미생물의 영향을 배제한(증류수)경우로 구분하여 각각 다른 capping 소재를 적용하여 퇴적물에서의 인 용출 저감 효과를 분석하였다. 실험 결과 화학적소재인 Fe-Gypsum, $SiO_2$-Gypsum로 capping을 할 경우, control보다 인 용출을 약 40% 이상 저감시키는 것을 확인할 수 있었다. 또한 복합소재인 granule gypsum+Sand는 약 50% 이상 용출을 저감 효과가 나타났다. 따라서 화학적 소재인 granule-gypsum과 그 위에 모래와 같은 친환경소재로 capping을 한다면 인 용출 저감에 효과적일 것으로 판단된다. Capping 처리 전후의 퇴적층내의 인 성상변화를 살펴본 결과, gypsum 투입에 의하여 호소 퇴적층에 존재하는 인이 용출되기 어려운 안정한 형태인 apatite-P 변화된 것으로 확인되었다. 이상의 결과를 토대로 capping 기술의 적용을 통하여 하천 및 호소 퇴적물에서 발생되는 인 용출에 대한 저감 효율을 기대할 수 있을 것으로 사료된다.

원주형 콘크리트 공시체의 캡핑종류별 압축강도 영향 (An Experimental Study on the Effect of Capping Type of Cylindrical Concrete Specimen on Compressive Strength)

  • 이상완;김수만;백승종;김광돈;이평석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 가을 학술발표회논문집(I)
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    • pp.167-172
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    • 2000
  • There are a variety of factors affecting measured compressive strength of hardened concrete. One of them is the end surface condition of concrete specimen. So, many capping methods have been developed for the specimen to meet the end condition requirement of ASTM C 39. A series of experimental strength comparison study was carried out using several representative capping methods, including pad capping method which is one of unbonded elastomeric capping system and was newly adopted in the ASTM standard. A comparison was also focused on their economy, convenience, harmfulness, etc.

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순환골재와 천연제올라이트 피복에 의한 연안퇴적물 오염물질 용출 차단 효과 (Effects of Capping with Recycled Aggregates and Natural Zeolite on Inhibition of Contaminants Release from Marine Sediment)

  • 김영기;신우석
    • 한국물환경학회지
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    • 제32권6호
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    • pp.546-551
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    • 2016
  • In this study, capping with recycled aggregate and natural zeolite in marine sediment was performed to investigate its inhibitory effect on pollutants released from sediment to seawater. An experiment was performed by capping with amendments for 60 days, and concentrations of organic matter (COD), nitrate, phosphate and metallic elements (Ni, Zn, Cu, Pb, Cd, As, and Cr) were measured. Two capping materials effectively suppressed pollutant release. Recycled aggregate showed better effectiveness for organic pollutant, nitrate and phosphate release. Meanwhile, natural zeolite was effective for metallic elements. As a result, recycled aggregate and natural zeolite can be considered as cost-effective/inexpensive capping material candidates. Also, the capping material can be selected according to the target pollutant.

Effects of Ti and TiN Capping Layers on Cobalt-silicided MOS Device Characteristics in Embedded DRAM and Logic

  • Kim, Jong-Chae;Kim, Yeong-Cheol;Choy, Jun-Ho
    • 한국세라믹학회지
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    • 제38권9호
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    • pp.782-786
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    • 2001
  • Cobalt silicide has been employed to Embedded DRAM (Dynamic Random Access Memory) and Logic (EDL) as contact material to improve its speed. We have investigated the influences of Ti and TiN capping layers on cobalt-silicided Complementary Metal-Oxide-Semiconductor (CMOS) device characteristics. TiN capping layer is shown to be superior to Ti capping layer with respect to high thermal stability and the current driving capability of pMOSFETs. Secondary Ion Mass Spectrometry (SIMS) showed that the Ti capping layer could not prevent the out-diffusion of boron dopants. The resulting operating current of MOS devices with Ti capping layer was degraded by more than 10%, compared with those with TiN.

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서해병 폐기물 배출해역 오염퇴적물의 정화·복원을 위한 준설토 피복 효과 평가 (Evaluating the Capping Effects of Dredged Materials on the Contaminated Sediment for Remediation and Restoration of the West Sea-Byeong Dumping Site)

  • 강동원;이광섭;김영윤;최기영;김창준
    • 해양환경안전학회지
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    • 제28권2호
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    • pp.212-223
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    • 2022
  • 서해병 폐기물 배출해역 오염심화구역의 퇴적물 정화·복원을 위해 2013, 2014, 2016, 2017년에 준설토를 피복하였다. 피복 효과 평가를 위해 배출해역 내 피복구역(5개 정점)과 자연회복구역(2개 정점)을 설정하고 2014년부터 2020년까지 연 1회 구역별 표층 퇴적물을 채취하여 퇴적물 물리·화학적 특성 및 저서동물상을 분석하였다. 퇴적물 평균 입도(Mz)는 자연회복구역에서 5.91~7.64 Φ로 세립질이었고 피복구역에서는 준설토의 영향으로 1.47~3.01 Φ의 조립질 퇴적물로 구성되어 있었다. 유기물 및 중금속 함량은 피복구역에서 자연회복구역 대비 약 50 % 낮아(p<0.05) 준설토 피복 효과가 있는 것으로 판단되었다. 대형저서동물 분석 결과에서는 피복구역의 출현종수, 생태지수가 자연회복구역보다 낮게 나타났다(p<0.05). 피복구역의 출현종수 및 생태지수의 시계열 분석 결과에서는 2013, 2014년 피복 이후 초기 4년간 증가하다가 이후 감소하는 경향을 보였다. 이는 피복으로 인해 빠른 성장과 짧은 수명의 특징을 보이는 기회종 생물들이 피복 초기에 우세하다가 2016, 2017년에 추가로 피복이 진행됨에 따라 서식환경이 다시 교란되어 나타난 현상으로 추정된다. AMBI는 자연회복구역 및 피복구역에서 모두 2등급(Good), BPI는 1~2등급 수준을 유지하고 있어 건강한 저서상태로 평가되었다. 따라서 폐기물 배출해역의 오염퇴적물 정화 및 저서생태계 복원을 위한 준설토 피복은 오염도 저감효과는 나타나지만 저서생태계의 측면에서는 장기적인 모니터링을 통해 회복추이를 관찰해야 할 것으로 판단된다. 또한 향후 배출해역의 오염심화구역 정화 복원 사업 확대 시 적응적 관리가 필요할 것으로 판단된다.

Ar IBE에 의한 Si표면손상이 NiSi특성에 미치는 영향과 $H_2$ anneal 및 TiN capping에 의한 효과 (The influence of Si surface damage by Ar IBE on NiSi characteristics and the effect of $H_2$ anneal and TiN capping)

  • 안순의;지희환;이헌진;배미숙;왕진석;이희덕
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 하계종합학술대회 논문집(2)
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    • pp.245-248
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    • 2002
  • In this paper, the influence of Si surface damage on the NiSi formation has been characterized. The silicon surface is damaged using ion beam type spotter. Then, the effect of H2 anneal and TiN capping layer on the damaged has also been analyzed. The sheet resistance of NiSi formed on damaged Si increased rapidly as the damaging time increases while thermal stability of damaged NiSi was stabler than the undamaged one. In the case when H\ulcorner anneal and TiN capping layer were applied together, the characteristics of NiSi shows a little improvement of the sheet resistance.

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페놀 화학사고 발생으로 오염된 퇴적물에서 페놀의 거동 기작이 원위치 피복의 정화 효율에 미치는 영향 (Effect of the Fate Mechanisms of Phenol on the Remediation Efficiency of In-Situ Capping Applied to Sediment Contaminated by Phenol Chemical Spills)

  • 이아름;최용주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제27권1호
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    • pp.60-70
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    • 2022
  • We evaluated the performance of in-situ capping to prevent the release of phenol, one of hazardous chemicals of concern for their impact on sediment. Sediment near the estuary of Hyeongsan River, Korea, and commercially-available sand were collected to evaluate their physical properties and phenol sorption characteristics. Biodegradation kinetics of phenol spiked into the sediment was evaluated under freshwater and estuarine salinity conditions. These experimental measurements were parameterized and used as input parameters for executing CapSim, a software predicting the performance of in-situ capping. The CapSim simulation demonstrated that capping with 50-cm sand reduced the phenol release by several orders of magnitude over 0.25- and 1-year duration for almost all simulation scenarios. The variables tested, i.e., cap thickness, pore-water movement, and biodegradation rate, showed high correlation to each other to influence the extent of phenol release from sediment to the water column. The findings and the framework employed to evaluate the performance of in-situ capping in this study can be adopted to determine whether in-situ capping is appropriate remedial approach at sediment sites impacted by hazardous chemicals due to accidental spills.

100nm 이하의 CMOS소자를 위한 Ni Silicide Technology (Technology of Ni Silicide for sub-100nm CMOS Device)

  • 이헌진;지희환;배미숙;안순의;박성형;이기민;이주형;왕진석;이희덕
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 하계종합학술대회 논문집(2)
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    • pp.237-240
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    • 2002
  • In this W, a NiSi technology suitable for sub-100nm CMOS sevice is proposed. It seems that capping layer has little effect on the sheet resistance and junction leakage current when there is no thermal treatment. However, there happened agglomeration and drastic increase of Junction leakage current without capping layer. In other word, capping layer especially TiN capping layer is highly effective in suppressing thermal effect. It is shown that the sheet resistance of 0.12${\mu}{\textrm}{m}$ linewidth and shallow p+/n junction with NiSi were stable up to 700 t /30 minute thermal treatment.

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해양 퇴적물에서 인 용출 차단을 위한 반응성 피복 소재로서 제강슬래그의 적용성 검토 (Applicability Assessment of Steel Slag as Reactive Capping Material for Blocking Phosphorus Release from Marine Sediment)

  • 조성욱;박성직
    • 한국농공학회논문집
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    • 제56권3호
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    • pp.11-17
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    • 2014
  • We investigated the applicability of steel slag as a capping material in order to minimize phosphorus(P) release into seawater. Steel slag is a byproduct from the iron and steel industries and the use of steel slag has some advantages in respect of both cost and environmental concern. P removal by steel slag were studied in a batch system with respect to changes in contact time and initial concentration. Kinetic adsorption data were described well by pseudo 2nd order model, indicating rate limiting step for P adsorption to steel slag is chemical sorption. Equilibrium adsorption data fitted well to Langmuir isotherm model which describes for single layer adsorption. The maximum P adsorption capacity of steel slag was 7.134 mg-P/L. Increasing the depth of steel slag produced a positive effect on interruption of P release. More than 3 cm of steel slag was effective for blocking P release and 5 cm of steel slag was recommended as the depth for capping of P contaminated marine sediments. Increasing P concentration and flow rate had a negative effect on P removal ratio. It was concluded that the steel slag has a potential capping material for blocking P release from marine sediments.

전면 유기발광 다이오드 기능층 캐핑레이어 적용에 따른 효율상승에 관한 연구 (A Study on the Efficiency Effects of Capping Layer on the Top Emission Organic Light Emitting Diode)

  • 이동운;조의식;전용민;권상직
    • 반도체디스플레이기술학회지
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    • 제21권3호
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    • pp.119-124
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    • 2022
  • Top emission organic light-emitting diode (TEOLED) is commonly used because of high efficiency and good color purity than bottom - emission organic light-emitting device (BEOLED). Unlike BEOLED, TEOLED contain semitransparent metal cathode and capping layer. Because there are many characteristics to consider just simple thickness change, optimizing organic thickness of TEOLED for microcavity is difficult. So, in this study, we optimized Device capping layer at unoptimized micro-cavity structure TEOLED device. And we compare only capping layer with unoptimized microcavity structure can overcome optimized micro-cavity structure device. We used previous our optimized micro-cavity structure to compare each other. As a result, it has been found that the efficiency can be obtained almost the same or higher only capping layer, which is stacked on top of the device and controls only the thickness and refractive index, without complicated structural calculations. This means that higher efficiencies can be obtained more easily in laboratories with limited organic materials or when optimizing new structures etc.