• 제목/요약/키워드: Carbon account

검색결과 244건 처리시간 0.029초

Flexible Energy-storage Devices: Maneuvers and Intermediate Towards Multi-functional Composites

  • Son, Ji Myeong;Oh, Il Kwon
    • Composites Research
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    • 제31권6호
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    • pp.355-364
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    • 2018
  • Flexible energy-storage devices (FESDs) have been studied and developed extensively over the last few years because of demands in various fields. Since electrochemical performance and mechanical flexibility must be taken into account together, different framework from composition of conventional energy-storage devices (ESDs) is required. Numerous types of electrodes have been proposed to implement the FESDs. Herein, we review the works related to the FESDs so far and focus on free-standing electrodes and, especially substrate-based ones. The way to utilize carbon woven fabric (CF) or carbon cloth (CC) as flexible substrates is quite simple and intuitive. However, it is meaningful in the point of that the framework exploiting CF or CC can be extended to other applications resulting in multifunctional composites. Therefore, summary, which is on utilization of carbon-based material and conductive substrate containing CF and CC for ESDs, turns out to be helpful for other researchers to have crude concepts to get into energy-storage multi-functional composite. Moreover, polymer electrolytes are briefly explored as well because safety is one of the most important issues in FESDs and the electrolyte part mainly includes difficult obstacles to overcome. Lastly, we suggest some points that need to be further improved and studied for FESDs.

건설폐기물을 활용한 이산화탄소 반응경화 시멘트 제조에 관한 연구 (Manufacturing of Calcium Silicate Cement Using Construction Waste)

  • 이향선;손배근;송훈
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.47-48
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    • 2023
  • In the domestic industrial sector, greenhouse gases emitted from the cement industry account for about 10%, with most of them generated during the cement clinker calcination process. During the calcination process, 57% of carbon dioxide is emitted from the decarbonation reaction of limestone, 30% from fuel consumption, and 13% from electricity usage. In response to these issues, the cement industry is making efforts to reduce carbon dioxide emissions by developing technologies for raw material substitution and conversion, improving process efficiency by utilizing low-carbon alternative heat sources, developing CO2 capture and utilization technologies, and recycling waste materials. In addition, due to the limitations in purchasing and storing industrial byproducts generated from industrial facilities, many studies are underway regarding the recycling of construction waste. Therefore, this study analyzes the manufacture of calcium silicate cement (CSC), which can store carbon dioxide as carbonate minerals in industrial facilities, and aims to contribute to the development of environmentally friendly regenerated cement using construction waste.

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레드머드를 혼입한 무시멘트 경화체의 물리적 특성 (Physical Propertise of Non-Cement Matrix with Red Mud)

  • 권형순;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.93-94
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    • 2023
  • Through the industrial revolution that began in the 18th century, the amount of carbon dioxide in the atmosphere increased rapidly as humans used fossil energy such as coal and oil as fuel for steam engines and factory machines. The amount of carbon dioxide emitted while producing cement, the main material of concrete used in construction, is large enough to account for 5-8% of the world's carbon dioxide emissions. In this study, Non cement-based matrix were used to reduce carbon dioxide emissions from cement production. Red mud is an industrial by-product generated in the manufacturing process of aluminum hydroxide using bauxite, and more than 120 million tons are produced worldwide. In addition, red mud is a porous material that can be physically adsorbed, and causes a photocatalytic reaction of TiO2 to remove harmful substances such as nitrogen oxide formaldehyde in the air and chemically adsorbs ammonia and hydrogen sulfide. Therefore, this study aims to examine the physical properties of the matrix by mixing red mud, an industrial by-product with good adsorption performance, into the Non cement-based matrix.

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Resonance behavior of functionally graded carbon nanotube-reinforced composites shells with spinning motion and axial motion

  • Jia-Qin Xu;Gui-Lin She
    • Steel and Composite Structures
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    • 제49권3호
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    • pp.325-335
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    • 2023
  • The missile is affected by both spinning and axial motion during its movement, which will have a very adverse impact on the stability and reliability of the missile. This paper regards missiles as cylindrical shell structures with spinning and axial motion. In this article, the forced vibration of carbon nanotube-reinforced composites (CNTRCs) cylindrical shells with spinning motion and axial motion is investigated, in which the clamped-clamped and simply-simply supported boundary conditions are considered. The displacement field is described by the first-order shear theory, and the vibration equation is deduced by using the Euler-Lagrange equation, after dimensionless processing, the dimensionless equation of motion is obtained. The correctness of this paper is verified by comparing with the results of the existing literature, in which the simply-simply supported ends are taken into account. In the end, the effects of different parameters such as spinning velocity, axial velocity, carbon nanotube volume fraction, length thickness ratio and load position on the resonance behavior of cylindrical shells are given. It can be found that these parameters can significantly change the resonance of axially moving and rotating moving CNTRCs cylindrical shells.

사용중 보강되는 부재의 보강설계법 연구 (A Study for Numerical Procedure of Strengthening Capacity in Field Structure)

  • 한만엽;이원창
    • 콘크리트학회논문집
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    • 제11권3호
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    • pp.13-21
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    • 1999
  • Recently, many strengthening methods are developed to repair damaged structures, especially, steel plate or carbon fiber sheet bonding methods are widely used. For the bonding methods, the strengthening materials are bonded when the original structure is under loading, with causes the difference of initial stresses between original member and bonded material. However, current design method or theory, which mostly depends on ultimately strength design, cannot account the difference of initial stresses between members, and it disregards the reduction of nominal strength. In this study, a new strengthening design theory and program which can account the difference of initial stresses are developed, and applied to the case when a structure in service is repaired. In order to verify the validity of the theory and the program, a test result is referred and compare with the results and it is showed that the calculated values are almost same as the referred data and finally proved that the program is reliable. The results showed that the amount of strengthening material depends on the status of damages of structure, and the nominal strength is reduced depending on the degree of damages.

구조물의 손상 상태에 따른 보강설계법 연구 (The Strengthening Desing Method Considering Damages of Structure)

  • 한만엽;이택성
    • 콘크리트학회논문집
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    • 제11권3호
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    • pp.35-45
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    • 1999
  • Recently, many strengthening methods are developed to repair damaged structures, especially, steel plate or carbon fiber sheet bonding methods are widely used. For the bonding methods, the strengthening materials are bonded when the original structure is under loading, which causes difference of initial stresses between original member and bonded material. However, current design method or theory, which mostly depends on ultimately strength design, cannot account the difference of initial stresses between members, and it disregards the reduction of nominal strength. In this study, a new strengthening design theory and program which can account the difference of initial stresses are developed, and applied to the case when a structure in service is repaired. In order to verify the validity of the theory and the program, a test result is referred and compared with the results and it is showed that the calculated values are almost same as the referred data and finally proved that the program is reliable. The results showed that the amount of strengthening material depends on the status of damages of structure, and the nominal strength is reduced depending on the degree of damages.

Investigating nonlinear vibration behavior of sandwich panels with multi-scale skins based on a numerical method

  • Cui, Zhenming;Cai, Xin;Ali, H. Elhosiny;Muhsen, Sami
    • Structural Engineering and Mechanics
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    • 제83권3호
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    • pp.283-292
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    • 2022
  • A nonlinear vibrational analysis of sandwich curved panels having multi-scale face sheets has been performed in this article based on differential quadrature method (DQM). All mechanical properties of multi-scale skins have been established in the context of three-dimensional Mori-Tanaka scheme for which the influences of glass fibers and random carbon nanotubes (CNTs) have been taken into account. The governing equations for sandwich the panel have been developed based upon thin shell formulation in which geometry nonlinearities have been taken into account. Next, DQ approach has been applied to solve the governing equations for determining the relationships of frequencies with deflections for curved panels. It will be demonstrated that the relationships of frequencies with deflections are dependent on the changing of CNT weight fractions, fibers alignment, fibers volume, panel radius and skin thickness.

소나무, 굴참나무 낙엽의 연소 방출가스 분석 및 건강 위험성 평가 (Combustion Emission Gas Analysis and Health Hazard Assessment about P. densiflora and Q. variabilis Surface Fuel Beds)

  • 김동현;김응식;이명보
    • 한국화재소방학회논문지
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    • 제23권5호
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    • pp.24-31
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    • 2009
  • 본 연구에서는 우리나라 주요 침엽수종인 소나무(Pinus densiflora)와 활엽수종인 굴참나무(Quercus variabilis)의 낙엽에 대해 FTIR(Fourier Transform Infrared) 분광계를 이용하여 배출 연소가스 종류 및 농도를 측정하였다. 실험결과 소나무와 굴참나무 낙엽에서 Carbon monoxide, Carbon dioxide, Acetic acid, Butyl acetate, Ethylene, Methane, Methanol, Nitrogen dioxide, Ammonia, Hydrogen Fluoride, Sulfur dioxide, Hydrogen bromide 등 13개 연소가스가 검출되었고 굴참나무 낙엽에서는 Nitrogen monoxide가 추가로 검출되었다. 방출된 연소가스의 전체 농도는 소나무 낙엽이 굴참나무 낙엽에 비해 4.5배 많이 검출되었다. 특히, 시간가중평균가스농도(Time-Weighted Average, TWA, ppm) 기준을 초과하는 연소가스는 Carbon monoxide, Carbon dioxide, Butyl acetate가 검출되었고 단시간노출기준(Short Term Exposure Limit, STEL, ppm) 기준을 초과하는 연소가스는 Carbon monoxide, Carbon dioxide로 소나무 및 굴참나무 모두에서 나타났다. 이에 산불에서의 낙엽의 지표화 연소시 전체 가스 방출량의 99% 이상을 차지하고 있는 Carbon monoxide, Carbon dioxide의 건강 위험성이 높은 것으로 나타났다.

금강 및 낙동강 하구·연안의 블루카본 저장량 공간정보 비교 (Comparative Analysis of Blue Carbon Stock Spatial Data in the Estuaries and Coastal Areas of the Geum and Nakdong Rivers)

  • 정지애;권봉오;홍현정;안종호;이명진
    • 대한원격탐사학회지
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    • 제39권6_1호
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    • pp.1505-1515
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    • 2023
  • 기후변화로 인한 이상기후 현상이 전 세계적으로 발생함에 따라 최근 탄소흡수원으로써 블루카본(Blue carbon)이 주목받고 있다. 블루카본은 기후변화에 관한 정부간 협의체(Intergovernmental Panel on Climate Change, IPCC)에 논의되어 온실가스 감축 수단으로 공식 인정되었으며, 국내·외로 신규 블루카본을 발굴하기 위해 다양한 연구가 진행중이다. 국내 블루카본 연구는 연안 습지 중 대부분을 차지하는 갯벌을 중심으로 탄소흡수 및 저장에 대한 연구가 진행되고 있으나, 이를 공간정보로 구축한 연구는 미비한 실정이다. 본 연구는 선행연구의 갯벌 탄소 저장량을 활용하여 금강과 낙동강 유역별 위치 및 공간정보로 전환하였다. 또한, 유역별 면적당 탄소 저장량의 대푯값을 산정하여 국내·외 다양한 갯벌 면적의 전체 탄소 저장량을 비교하였다. 분석 결과, 금강 및 낙동강 유역 모두 갯벌 데이터에 따라 탄소 저장량이 다르게 나타났으며, 금강 유역은 국립해양조사원(469,810.1 Mg C), 낙동강 유역은 환경부(217,145.01 Mg C) 자료가 가장 높게 나타났다. 본 연구의 결과는 향후 국내 블루카본 공간정보 구축 연구에 대한 기초자료로 활용될 수 있을 것으로 사료된다.

대체 외부탄소원으로서의 TPA 생산부산물 특성 및 현장적용성 평가 (Assessment of Characteristics and Field Applicability with TPA By-Product as Alternative External Carbon Source)

  • 정인철;전성규;성낙창
    • 대한환경공학회지
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    • 제28권5호
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    • pp.480-486
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    • 2006
  • B시 S하수처리장에서 화학침전 공정에서 MLE 공정으로 공법을 변경하였으며, 생물학적으로 탈질시 부족한 탄소원을 보충하기 위해 외부탄소원이 요구되었다. 본 연구에서는 약 4.7%의 아세트산을 포함하는 TPA(Terephthalic Acid) 생산부산물의 대체탄소원으로 적용 가능성을 평가하기 위해 NUR(Nitrate Uptake Rate) 및 OUR(Oxygen Uptake Rate) 실험과 현장 적용실험을 수행하였다. 실험 결과 TPA 생산 부산물은 일반 상용 외부탄소원으로 널리 쓰이는 메탄올보다 빠른 순응특성을 나타내었고 비탈질율이 $8.24mg{NO_3}^--N/gVSS/hr$, 단위 질산성 질소 제거당 COD 소모비는 $3.70COD_{Cr}/g\;NO_3$, RBDCOD 함량 99.4%로 나타났다. S하수처리장에 대한 TPA 생산부산물 현장 적용 실험을 통해 안정적인 영양염류 제거효율을 나타내었으며 방류수 T-N 농도가 8.2 mg/L로 생물학적 탈질에 요구되는 탄소원을 보충할 수 있는 대체탄소원으로 적합하다고 판단되었다.