• 제목/요약/키워드: green material

검색결과 1,398건 처리시간 0.028초

Type-II ZnO/ZnSe 코어/쉘 이종 구조 합성 및 광촉매활성 평가 (Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity)

  • 이우형;최광일;강동천;백수웅;이석호;임철현
    • 한국전기전자재료학회논문지
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    • 제27권3호
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    • pp.178-183
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    • 2014
  • Recently, various type of nanomaterials such as nanorod, nanowire, nanotube and their core/shell nanostructures have attracted much attention in photocatalyst due to their unique properties. Among them, Type-II core/shell heterostructures have extensively studied because it has exhibited improved electrical and optical properties against their single-component nanostructure. Such structures are expected to offer high absorption efficiency and fast charge transport due to their stepwised energetic combination and large internal surface area. Thus, it has been considered as potential candidates for high efficient photocatalytic activity. In this work, we introduce a novel chemical conversion process to synthesize Type-II ZnO/ZnSe core/shell heterostructures. A plausible conversion mechanism to ZnO/ZnSe core/shell heterostructres was proposed based on SEM, XRD, TEM and XPS analysis. The ZnO/ZnSe heterostructures exhibited excellent photocatalytic activity toward the decomposition of RhB dye compared to the ZnO nanorod arrays due to enhanced light absorption and the type-II cascade band structure.

친환경 건축물 단열재 최근 연구 동향 (Recent Research Trends for Green Building Thermal Insulation Materials)

  • 박종문;김동환;서동진
    • 청정기술
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    • 제18권1호
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    • pp.14-21
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    • 2012
  • 친환경 건축물에 사용되는 미네랄울, 폴리우레탄 등 전통적인 단열재로부터 최근에 주목받고 있는 VIP (Vacuum Insulation Panel), 에어로젤, 그리고 미래기술로 연구되고 있는 VIM (Vacuum Insulation Material), DIM (Dynamic Insulation Material) 등 단열재 및 단열 시스템의 특성과 장단점을 비교하였다. 매우 낮은 열전도율을 지닌 VIP 및 에어로젤은 기존 단열재에 비해 에너지 소모를 줄일 수 있으므로 주거면적을 크게 확대할 수 있는 장점이 있으며, 특히 에어로젤은 반투명 및 투명재질로 만들 수 있어 건물에 응용될 수 있는 가능성이 매우 크다. 단열재는 낮은 열전도율뿐만 아니라, 건설현장 응용성, 기계적강도, 내화성, 비용 및 환경영향 등을 고려하여야 하므로, 전통적인 단열재 및 최신 단열재를 활용하고 지속적으로 개선시키는 노력을 해야 할 것이다.

Structural and Electrical Properties of (La,Nd,Sr)MnO3 Ceramics for NTC Thermistor Devices

  • Shin, Kyeong-Ha;Park, Byeong-Jun;Lim, Jeong-Eun;Lee, Sam-Haeng;Lee, Myung-Gyu;Park, Joo-Seok;Lee, Sung-Gap
    • 한국전기전자재료학회논문지
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    • 제35권3호
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    • pp.292-296
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    • 2022
  • (La0.5Nd0.2Sr0.3)MnO3 specimens were prepared by a solid-state reaction. In all specimens, X-ray diffraction patterns of an orthorhombic structure were shown. The fracture surfaces of (La0.5Nd0.2Sr0.3)MnO3 specimens showed a transgranular fracture pattern be possibly due to La ions (0.122 nm) as a perovskite A-site dopant substituting for Nd ions (0.115 nm) having a small ionic radius. The full-width at half maximum (FWHM) of the Mn 2p XPS spectra showed a value greater than that [8] of the single valence state, which is believed to be due to the overlapping of Mn2+, Mn3+, and Mn4+ ions. The dependence of Mn 2p spectra on the Mn3+/Mn4+ ratio according to sintering time was not observed. Electrical resistivity resulted in the minimum value of 100.7 Ω-cm for the specimen sintered for 9 hours. All specimens show a typical negative temperature coefficient of resistance (NTCR) characteristics. In the 9-hour sintered specimen, TCR, activation energy, and B25/65-value were -1.24%/℃, 0.19 eV, and 2,445 K, respectively.

Micro-flown 장비를 이용한 옥상녹화재료 음향 물성치 실험 (Using a Micro-flown device to measure acoustical properties of green roof systems)

  • 양홍석
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.870-873
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    • 2014
  • Green roof systems has widely been used on rooftop of buildings by considering environmental benefits in aspects of bio-diversity, storm-water runoff as well as noise reduction. To predict noise reduction effect by green roof systems, it is necessary to measure in-situ acoustical properties of the components by devices enabling in-situ measurements. In this study, Micro-flown, which is the state of the arts device to measure in-situ normalized impedance and absorption coefficient has been used to measure acoustical properties of green roof materials according to different water saturation condition in the materials.

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저탄소 그린콘크리트의 물리·역학적 특성 (Physical and Mechanical Properties of Low Carbon Green Concrete)

  • 조일호;성찬용
    • 한국농공학회논문집
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    • 제55권3호
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    • pp.123-128
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    • 2013
  • This study was performed to evaluate the slump flow, air content, setting time, compressive strength, adiabatic temperature rise and diffusion coefficient of chloride used ordinary portland cement, crushed coarse aggregate, crushed sand, river sand, fly ash, limestone powder, blast furnace slag powder and superplasticizer to find optimum mix design of low carbon green concrete for structures. The performances of low carbon green concrete used fly ash, limestone powder and blast furnace slag powder were remarkably improved. This fact is expected to have economical effects in the manufacture of low carbon green concrete for structures. Accordingly, the fly ash, limestone powder and blast furnace slag powder can be used for low carbon green concrete material.

압축성형공정에 대한 알루미나 성형체 밀도분포의 FE 분석 (FE Analysis of Alumina Green Body Density for Pressure Compaction Process)

  • 임종인;육영진
    • 한국세라믹학회지
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    • 제43권12호
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    • pp.859-864
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    • 2006
  • For the pressure compaction process of the ceramic powder, the green density is very different with both the ceramic body shape and the processing conditions. The density difference cause non-uniform shrinkages and deformations, and make cracks in the sintered ceramics. In this paper, Material properties of the alumina powder mixed with binder and the friction coefficient between the powder and the tool set were determined through the simple compaction experiments: Also the powder flow characteristics were simulated and the green density was analyzed during the powder compaction process with Finite Element Method (FEM). The results show that the density distributions of the green body were improved at the optimized processing condition and both the possibility of the farming crack generation and rho deformation of the sintered Alumina body were reduced.

결정질 실리콘 태양전지 표면 역 피라미드 구조의 특성 분석 (Influence of Inverted Pyramidal Surface on Crystalline Silicon Solar Cells)

  • 양지웅;배수현;박세진;현지연;강윤묵;이해석;김동환
    • Current Photovoltaic Research
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    • 제6권3호
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    • pp.86-90
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    • 2018
  • To generate more current in crystalline silicon solar cells, surface texturing is adopted by reducing the surface reflection. Conventionally, random pyramid texturing by the wet chemical process is used for surface texturing in crystalline silicon solar cell. To achieve higher efficiency of solar cells, well ordered inverted pyramid texturing was introduced. Although its complicated process, superior properties such as lower reflectance and recombination velocity can be achieved by optimizing the process. In this study, we investigated optical and passivation properties of inverted pyramid texture. Lifetime, implied-Voc and reflectance were measured with different width and size of the texture. Also, effects of chemical rounding at the valley of the pyramid were observed.

LID 기법 적용에 의한 SCS-CN값 변화가 강우유출특성에 미치는 영향 분석 (The Analysis of Runoff Characteristics by Alterations of SCS-CN Value using LID Method)

  • 권준희;박인혁;하성룡
    • 환경영향평가
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    • 제19권1호
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    • pp.49-57
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    • 2010
  • The objective of the research is to analyze changing trend of water discharge in precipitation, according to changing land use, through an environment-friendly urban development method called LID. The study chose S1 basin (Separated Sewer districts) in Cheongju region for survey. Among LID methods, relatively more applicable methods of green rooftop space and parking lot with permeable material were selected to construct plausible scenarios. Curve Number (CN) value was calculated due to land use patterns in each scenario, and SWMM model simulation were conducted during 2008 for comparative analysis. For Case 1, only parking lot with permeable material was applied to the scenario. Green rooftop space I and II were applied to Case 2 and 3 respectively. For Case 4 and 5, green rooftop space I and II were applied, in addition to parking lot with permeable material, Calculation of CN value showed that for S1 basin, the value was 88.1 (prior to scenario application), 86.5 (Case 1), 81.9 (Case 2), 68.5 (Case 3), 80.4 (Case 4) and 67.2 (Case 5). Changing pattern of rain water discharge was analyzed for each scenario. For Case 1, the change was not remarkable before and after application of scenario. In Case 2 and 4, the impact of rain water discharge as source of pollutant fell to 20~30%. The rate dropped to 30~50% in Case 3 and 5 respectively. The result demonstrates that the amount of rain water discharge, amount and frequency of sewer overflow, frequency of rain water discharge, and pollution load decreased in accordance with declining CN value in each scenario. In installing green rooftop space, the effect was twice greater when rain water discharge was directly infiltrated into soil.

하천호안공법의 시각적 선호도 - 광양시 동천을 사례로 - (Visual Preference of the Methods for River Embankment - The Case of Dongchon in Gwangyang -)

  • 이상석
    • 한국조경학회지
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    • 제34권3호
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    • pp.12-22
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    • 2006
  • The purpose of this study is to evaluate visual preferences of the methods for river embankment based on seasonal changes and to reveal the relationship between visual preference and effective factors, which are the physical and esthetic elements inside the river. For this research seven river embankment methods including concrete block, concrete wall, gabion, and vegetated concrete block were selected in Dongchon of Gwangyang. Twenty-eight pictures by the four pictures of each embankment method based on seasonal changes, the winter and summer of the first and second years after construction were used for a photo-questionnaire by 49 participants. In the analysis of the relationship between visual preference and effective factors, the independent variables included eight factors: form of the material, harmony with the surroundings, the cleanness of river floor, the green area of embankment methods, the water area in river floor, the stone and sand area in river floor, the planting area in river floor, and the area of embankment itself. The result of this study are as follows. First, visual preference in summer was higher than in winter, and the summer landscape of the second you scored the highest value for visual preference. Second, similarly to the way the vegetated concrete block produced a green effect, cobblestone and gabion embankments made of natural materials scored higher than others, whereas the concrete retaining wall scored the lowest of all methods because of it's artificiality. Third, the seven independent variables, except form of the material, are proved statistically significant at the 5% level. The water area in river floor, harmony with the surroundings, the planting area in river floor, and the cleanness of the river floor were revealed as more effective factors influencing visual preference. The research results suggest that the riverscape has to be controlled in terms of seasonal change and embankment methods. Natural materials and green effects in embankment methods are more important for increasing landscape preference, and the landscape factors inside a river should also be considered important variables. It is recommended that advanced study on other factors affecting visual preference of the riverscape be carried out to support this research.

골프장 putitng green 개선을 위한 토양 개량제와 green 구조시설 (Amendments and Construction Systems for Improving the Performance of Sand-Based Putting Greens)

  • 옥창호
    • 아시안잔디학회지
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    • 제18권3호
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    • pp.149-163
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    • 2004
  • Putting green을 골프장 전체 면적의 $2\%$로 작은 면적이지만 green의 건강한 상태는 골프장의 성공여부를 좌우한다. 이 실험은 University of Missouri-Columbia, Turfgrass Research Center에서 어느 putting green root zone 구조와 토양 개량제가 가장 건강하고 최적의 putting green조건을 유지하는가를 비교하기 위하여 1999년 6월부터 2002년 12월까지 실행되어졌다. California putting green root zone system(30츠의 $100\%$ 모래층 밑에 13cm silt loam 토양층)은 특히 putting green을 가격을 줄일 수 있으며 배수가 잘되고 공기 순환에 있어서는 좋은 조건이지만 낮은 수분 보존량과 잔디에 공급되어지는 영양분이 낮은 것으로 조사 되어지고 있다. USGA(United States Golf Association) putting green root zone system [30cm의 $90\%$ 모래와 $10\%$ Peatmoss (organic material; 유기물) 혼합물층 밑에 13cm 자갈층]은 California system($100\%$ 모래)의 단점을 보완할 수 있지만 년수가 지남에 따라 문제점이 발견되어졌다. 시간의 흐름에 따른 organic matter의 축적과 분해 그리고 잦은 잔디관리 장비의 운행과 player들의 발자국에 의한 green compaction(압축)의 증가가 putting green에서의 수분 침투량(Infiltration rate)과 공기순환을 방해하며 이로인해 잔디의 생장을 저해하며 green의 질은 낮게 만든다. Putting green root zone mixtures에서의 유기물질인 peatmoss사용에 비해 Zeolite와 같은 무기물질의 사용이 토양 물리적, 생리적 특성에 있어 우수함이 조사되어지고 있다. 년수가 지날수록 증가하는 USGA green($10\%$ Peatmoss)의 단점 (organic matter의 축적과 분해 증가, 수분 침투력과 공기순환 감소, 높은 수분함량)에 비해 $10-15\%$ Zeolite(무기물)의 사용이 보다나은 putting green 물리적, 생리적 조건들을 오래토록 유지할 수 있으며 건강한 잔디상태를 보존할 수 있을 것이다. 이 시험은 수정된 Modified California putting green root zone system [25cm의 $85\%$ 모래와 $15\%$ Zeolite(inorganic material ; 무기물) 혼합물층 밑에 18cm silt loam 토양층]이 California와 USGA green system과 비교할 때 보다나은 putting green 조건을 유지하는가를 위해 조사되어졌다. 수정된 Modified California green system이 건강한 putting green을 유지하기 위한 우수한 물리적 조건(높은 수분 침투력과 수분 함량, 낮은 토양밀도)과 생리적 조건(높은 양이온 교환력과 유효 식물영양분 함량)을 가지고 있음이 조사되어졌다. 또한 우수한 putting green 잔디품질을 이 실험 기간동안 유지하였다. 결론적으로 California system($100\%$ 모래)에 $15\%$의 무기물질(Zeolite)이 첨가되어진 Modified California putting green system이 최적의 putting green 조건과 우수한 Bentgrass 잔디품질을 4년 동안 유지하였음을 이 실험을 통해 조사되어졌다.