• Title/Summary/Keyword: 친환경재료

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The Development and Trend of Eco-Friendly Water-Dispersible Polyurethane Field. (친환경 수분산 폴리우레탄 분야의 개발과 발전 동향)

  • Lee, Joo-Youb
    • Journal of the Korean Applied Science and Technology
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    • v.38 no.6
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    • pp.1533-1542
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    • 2021
  • Eco-friendly polyurethane can be defined as a highly utilized material used in various fields. The various structural properties of the synthesis of isocyanates and polyols provide versatility and customization for use in the manufacturing field. The characteristics of polyurethane vary widely from soft touch coatings to hard building materials like rocks. These mechanical, chemical and biological properties and ease of alignment are drawing tremendous attention not only in the field of research but also in related industries. In order to improve the performance of water-dispersible polyurethane materials, it can be derived through processes such as adjusting the blending of raw materials and adding additives and nanomaterials. This study highlights the basic chemical structure of eco-friendly water-dispersible polyurethane in the fields of medical science, automobiles, coatings, adhesives, paints, textiles, marine industries, wood composite materials, and clothing.

A Study on the Durability and Environmentally Friendly of Inorganic Grouting Material (무기질계 지반주입재의 내구성 및 친환경적 특성에 관한 연구)

  • Chun, Byungsik;Park, Dukhyum;Kang, Hyoungnam;Do, Jongnam
    • Journal of the Korean GEO-environmental Society
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    • v.9 no.5
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    • pp.37-43
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    • 2008
  • Inorganic injection material, which is one of the ground improvement materials, consists of cement accelerator and inorganic micro particle. The inorganic injection material is known to overcome the major limitations of water glass type improvement materials, which are leaching and accompanying strength loss. The inorganic injection material is superior in durability and strength, and environmentally friendly since leaching is prevented. In this study, the effectiveness and environment-friendliness of the MIS(Micro Injection-process System) using the inorganic injection material is compared to SGR, which uses the water glass. The performed tests were unconfined compression test, chemical resistance test, and fish poison test. The unconfined compression tests showed that the MIS results in 1.7 times higher 28 day strength compared to the SGR. In addition, the strength continually increased with time for the MIS, while it decreased for the SGR. The chemical resistance tests indicated that the rate of change in length using the MIS is 10~25 times smaller than when using the SGR. The fish poison test proved that MIS was more environmentally friendly. The analysis of chemical ingredients of leached showed that the amount of $Cr^{6+}$, Pb and Si leached from the MIS is less compared to the SGR. Accordingly, the MIS grout is more high-strength than existing SGR grout. It is excellent in shortening of construction period, structural stability of foundation and environmentally friendly. So, it is considered that it has not little the problem about groundwater pollution.

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Optimization for Ammonia Decomposition over Ruthenium Alumina Catalyst Coated on Metallic Monolith Using Response Surface Methodology (반응표면분석법을 이용한 루테늄 알루미나 메탈모노리스 코팅촉매의 암모니아 분해 최적화)

  • Choi, Jae Hyung;Lee, Sung-Chan;Lee, Junhyeok;Kim, Gyeong-Min;Lim, Dong-Ha
    • Clean Technology
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    • v.28 no.3
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    • pp.218-226
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    • 2022
  • As a result of the recent social transformation towards a hydrogen economy and carbon-neutrality, the demands for hydrogen energy have been increasing rapidly worldwide. As such, eco-friendly hydrogen production technologies that do not produce carbon dioxide (CO2) emissions are being focused on. Among them, ammonia (NH3) is an economical hydrogen carrier that can easily produce hydrogen (H2). In this study, Ru/Al2O3 catalyst coated onmetallic monolith for hydrogen production from ammonia was prepared by a dip-coating method using a catalyst slurry mixture composed of Ru/Al2O3 catalyst, inorganic binder (alumina sol) and organic binder (methyl cellulose). At the optimized 1:1:0.1 weight ratio of catalyst/inorganic binder/organic binder, the amount of catalyst coated on the metallic monolith after one cycle coating was about 61.6 g L-1. The uniform thickness (about 42 ㎛) and crystal structure of the catalyst coated on the metallic monolith surface were confirmed through scanning electron microscopy (SEM) and X-ray diffraction (XRD) analysis. Also, a numerical optimization regression equation for NH3 conversion according to the independent variables of reaction temperature (400-600 ℃) and gas hourly space velocity (1,000-5,000 h-1) was calculated by response surface methodology (RSM). This model indicated a determination coefficient (R2) of 0.991 and had statistically significant predictors. This regression model could contribute to the commercial process design of hydrogen production by ammonia decomposition.

A Study on Durability and Impermeability of Environmentally Friendly Inorganic Ground Injection Material (환경 친화적인 무기질계 지반주입재의 내구성 및 차수효과에 관한 연구)

  • Chun, Byungsik;Kang, Hyoungnam;Do, Jongnam;Lim, Jooheon
    • Journal of the Korean GEO-environmental Society
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    • v.7 no.6
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    • pp.113-119
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    • 2006
  • Recently, the ground injection method using water glasses as one of the main resources and the products of these constructions have basic problems in terms of the method of constructions for the permanent foundation reinforcement and stopping leakage of water because they have some serious problems such as durability, compressive strength, injectant eluviation and so forth even though they are still used to stop leakage of water in the temporary structures. The purpose of this study is to demonstrate the strength characteristic and environment friendliness of NDS method by unconfined compressive strenth test, permeability test, length change test, leaching test, and assessment of environmental impact in comparison water glass type material. The test results show that NDS method has significant improvement of strength, permeability, volume change, and leaching. An assessment of environmental impact also demonstrates that the NDS material is environmentally friendly.

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A Study on the Hydraulic Stability and Efficiency Investigation of Water Purification Material Installed in Channel (수질정화체를 설치한 수로의 수리적 안정성과 효율성 연구)

  • Kang, Seung-Mook;Kim, Sun-Joo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.650-654
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    • 2008
  • 친환경 공법의 수리적인 안전성 검토는 식생 및 자연재료의 물리적 특성, 하천의 수리 수문학적 특성, 유사특성과 이들의 상호관계 등에 대한 분석이 요구되며, 이에 선행하여 분석에 이용되는 장기간의 충분한 자료가 구축되어 있어야 한다. 그러나 우리나라의 경우 이러한 자료는 부족한 실정이며, 주로 시범구간을 통한 제한된 자료만이 이용되고 있을 뿐이므로 수리학적 치수방재적 측면에서 친환경 공법의 안전성 평가에 있어 많은 어려움을 겪고 있다. 본 연구에서 수질정화체의 배치 변화를 통한 수치해석 통하여 수심 및 유속분포를 비교 분석하여 수로의 3차원적 흐름특성을 파악하고, 실제 대상수로에 수질정화체를 설치하여 수로의 수리적 안정성을 연구하였다. FLOW-3D와 수리모형시험 그리고 대상수로 모니터링을 각 경우에 따라 유속, 수위를 측정하여 다양한 조건에 대한 흐름 특성을 연구하였다.

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Algae Based Energy Materials (해조류를 이용한 친환경 에너지소재)

  • Han, Seong-Ok
    • New & Renewable Energy
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    • v.4 no.4
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    • pp.50-55
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    • 2008
  • Recently, sea algae cultivation as carbon sink and carbon dioxide fixation have been considered. Also, various researches on bioenergy derived from sea algae and the utilization of fibers, saccharide, and lipid of sea algae have been performing. Till now, algae fibers has been used for manufacturing of paper and reinforcing of polymer composites and the extracts of sea algae are used for cosmetics, pharmaceutical materials and food such as agar. Especially, algae fiber has so similar properties to cellulose in terms of crystallinity and functional groups that it can be utilized as reinforcements of biocomposites. Biocomposites as alternatives of glass fiber reinforced polymer composites are environmentally friendly polymer composites reinforced with natural fibers and are actively applying to the automobiles and construction industries. In this paper, characteristics of algae fiber and biocomposites reinforced with algae fiber as environmentally friendly energy materials have been introduced.

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The Materials of Earth Friendly Architecture (친환경 건축물의 자재에 관한 연구)

  • Yoo, Ho-Chun;Lee, Young-A
    • Journal of the Korean Solar Energy Society
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    • v.23 no.4
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    • pp.81-88
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    • 2003
  • Earth friendly system is applied widely to industries for maintaining development. The declaration of earth friendly characteristic which is an indication of the total amount of energy in evaluation of earth friendly material is not easy to apply to building materials Therefore, Accurate standards about earth friendly materials are necessary. Earth friendly building materials should be considered in the fields of energy and resource consumption, changes in urban climate and resident health, etc. Among these fields, energy and resource consumption has released toxic pollutants into the air, caused indoor moisture problems and exhausted resources continuously. Especially, moisture problem is an indicator of main factors of earth friendly characteristic. Timber, Soil. Cement Mortar and Charcoal are used to examine the sustainable properties of materials of moisture control. The result shows that wood, charcoal and soil is vivid in changes of moisture absorption and discharge in comparison with that of cement mortar.

연잎과 같은 Dual-scale의 $TiO_2$ 표면구조 제작방법

  • Choe, Hak-Jong;Sin, Ju-Hyeon;Han, Gang-Su;Kim, Gang-In;Lee, Heon
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.05a
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    • pp.33.1-33.1
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    • 2011
  • 최근 산업에서는 산업의 고도화로 인한 환경오염이 큰 문제로 대두되고 있다. 이러한 문제점을 해결하기 위한 방안 중, 친환경소재에 대해 연구가 활발히 진행하고 있다. 연잎의 자기세정효과(self-cleaning effect)에 관한 연구는 이러한 친환경소재에 대한 연구 중 하나이다. 연잎의 표면은 마이크로 크기의 돌기와 나노 크기의 왁스의 dual-scale의 구조로 이루어져 있으며, 왁스의 경우 소수성을 가진다. 이러한 dual-scale 구조와 소수성의 왁스에 의해 초소수성이 발현되고, 결과적으로 연잎의 자기세정효과가 발현된다. 본 연구에서는 나노임프린트 리소그래피와 수열합성법을 이용한 나노로드 성장을 이용하여, 연잎의 dual-scale의 표면구조를 형성하는 실험을 진행하였다. 나노임프린트 리소그래피와 수열합성법은 다른 공정에 비하여 상대적으로 적은 비용을 필요로 하고, 대면적에 적용이 가능한 기술이다. 실험 진행은 먼저 silicon 마스터 스탬프를 역상으로 복제한 PDMS (Polydimethylsiloxane) 스탬프와 $TiO_2$ sol을 이용하여 기판 위에 $TiO_2$ gel 패턴을 형성한 후, 열처리 과정을 통해 $TiO_2$ gel 패턴을 결정화한다. 다음으로 결정화된 $TiO_2$ 패턴 기판을 수열합성 방법을 이용하여 $TiO_2$ 나노로드를 무작위적으로 형성하였다. 마지막으로 소수성을 갖는 자기 조립 단분자막 용액을 이용하여 소수성 표면처리를 한 후 접촉각을 측정하였다. 본 연구에서 개발한 기술을 이용하여 다양한 형태의 기판에 초소수성 표면을 형성할 수 있고, 자기세정효과를 갖는 표면을 구현할 수 있다.

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