• Title/Summary/Keyword: 물질 전과정 평가

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Life Cycle Assessment of Activated Carbon Production System by Using Poplar (포플러를 이용한 활성탄 제조 시스템에 대한 전과정 평가)

  • Kim, Mihyung;Kim, Geonha
    • Journal of Korean Society of Environmental Engineers
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    • v.36 no.11
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    • pp.725-732
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    • 2014
  • Phytoremediation is a technology to mitigate the pollutant concentrations such as metals, pesticides, solvents, oils, or others in contaminated water and soils with plants. The plants absorb contaminants through the root and store them in the root, stems, or leaves. Rapid growth trees such as poplar are used to remove low concentrated contaminants eco-friendly and economically in a wide contaminated region. This study was practiced to evaluate an activated carbon production system by using poplar wood discarded after phytoremediation. Life cycle assessment methodology was used to analyze environmental impacts of the system, and the functional unit was one ton of harvested poplar. It was estimated that the small size rotary kiln for activated carbon production from poplar wood had an environmental benefit in optimized conditions to minimize energy consumptions. The results of an avoided environmental impact analysis show that the system contribute to reduce environmental impacts in comparison with activated carbon production from coconut shell.

A Study on the Life-Cycle Assessment and the Case Study for the Environmental Management (환경경영을 위한 전과정평가(LCA)의 고찰 및 사례 연구)

  • Lim, Jae-Hwa;Lee, Seok-Jun
    • Korean Business Review
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    • v.18 no.1
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    • pp.59-79
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    • 2005
  • recently, world is progressing large quantity consumption with continuous Innovation and economic growth and pollution is accelerated at these process. Increase of industry activity and service that is point of corporation activity is discharging environmental pollutants at whole process to manufacture of end product and exhaust process from acquisition of raw material for accompanied product production hereupon. At the same time, being promoting resources consumption by that use much raw material, As a result, is becoming obstacle factors in sustainable development. So, corporation's responsibility for environmental protection is emphasized. Corporation which must prepare in green round or environmental problems should consider environmental effects that is happened over whole life of products that include waste treatment after raw material acquisition and use as well as selling end product simply. A Life Cycle Assessment techniques is normalized and standardized in International Standard Organization for technical committee 207(TC 207) world widely, and effort to apply in corporation's activity because mastering LCA techniques in domestic several corporations is undergone actively. Coming into effect of Kyoto's Protocol and International Organization for Standard 14000 series revision are presenting new survival principle in competition between country or corporation. LCA technique may become very useful means to corporation which wish to attempt environment management in real condition that awareness for environment is important. Also, An LCA to each product is going to cause big effects in corporation's whole image as well as competitive power raising for single product. Therefore, this research wishes to examine some instances for the future competitive product development at the estimation of environmental friendliness using LCA techniques and more theoretical considerations of the LCA techniques that can dominate corporation's fate.

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Material Life Cycle Assessment on Mg2NiHx-CaF2 Composites (Mg2NiHx-CaF2 수소 저장 복합체의 물질 전과정 평가)

  • HWANG, JUNE-HYEON;SHIN, HYO-WON;HONG, TAE-WHAN
    • Transactions of the Korean hydrogen and new energy society
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    • v.33 no.2
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    • pp.148-157
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    • 2022
  • Research on hydrogen storage is active to properly deal with hydrogen, which is considered a next-generation energy medium. In particular, research on metal hydride with excellent safety and energy efficiency has attracted attention, and among them, magnesium-based hydrogen storage alloys have been studied for a long time due to their high storage density, low cost, and abundance. However, Mg-based alloys require high temperature conditions due to strong binding enthalpy, and have many difficulties due to slow hydrogenation kinetics and reduction in hydrogen storage capacity due to oxidation, and various strategies have been proposed for this. This research manufactured Mg2Ni to improve hydrogenation kinetics and synthesize about 5, 10, 20 wt% of CaF2 as a catalyst for controlling oxidation. Mg2NiHx-CaF2 produced by hydrogen induced mechanical alloying analyzed hydrogenation kinetics through an automatic PCT measurement system under conditions of 423 K, 523 K, and 623 K. In addition, material life cycle assessment was conducted through Gabi software and CML 2001 and Eco-Indicator 99' methodology, and the environmental impact characteristics of the manufacturing process of the composites were analyzed. In conclusion, it was found that the effects of resource depletion (ARD) and fossil fuels had a higher burden than other impact categories.

Evaluation of TiN-Zr Hydrogen Permeation Membrane by MLCA (Material Life Cycle Assessment) (물질전과정평가(MLCA)를 통한 TiN-Zr 수소분리막의 환경성 평가)

  • Kim, Min-Gyeom;Son, Jong-Tae;Hong, Tae-Whan
    • Clean Technology
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    • v.24 no.1
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    • pp.9-14
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    • 2018
  • In this study, Material life cycle evaluation was performed to analyze the environmental impact characteristics of TiN-Zr membrane manufacturing process. The software of MLCA was Gabi. Through this, environmental impact assessment was performed for each process. Transition metal nitrides have been researched extensively because of their properties. Among these, TiN has the most attention. TiN is a ceramic materials which possess the good combination of physical and chemical properties, such as high melting point, high hardness, and relatively low specific gravity, high wear resistance and high corrosion resistance. With these properties, TiN plays an important role in functional materials for application in separation hydrogen from fossil fuel. Precursor TiN was synthesized by sol-gel method and zirconium was coated by ball mill method. The metallurgical, physical and thermodynamic characteristics of the membranes were analyzed by using Scanning Electron Microscope (SEM), Energy Dispersive X-ray (EDS), X-ray Diffraction (XRD), Thermo Gravimetry/Differential Thermal Analysis (TG/DTA), Brunauer, Emmett, Teller (BET) and Gas Chromatograph System (GP). As a result of characterization and normalization, environmental impacts were 94% in MAETP (Marine Aquatic Ecotoxicity), 2% FAETP (Freshwater Aquatic Ecotoxicity), 2% HTP (Human Toxicity Potential). TiN fabrication process appears to have a direct or indirect impact on the human body. It is believed that the greatest impact that HTP can have on human is the carcinogenic properties. This shows that electricity use has a great influence on ecosystem impact. TiN-Zr was analyzed in Eco-Indicator '99 (EI99) and CML 2001 methodology.

Establishment of Evaluation Method for the First Stage of TMDL in Yeongsan River Stream (영산강 수계 제1단계 수질오염총량관리 평가방법 수립)

  • Kim, Seok-Gyu;Park, Se-Hwan;Ko, Kwang-Yong;Yoo, Sun-Hee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.923-926
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    • 2010
  • 수계를 단위유역으로 나누어 목표수질을 설정하고 그 목표수질을 달성 유지하기 위해 지자체별, 단위유역별 허용가능한 배출부하량을 산정한 후 그 부하량 범위내로 오염물질을 관리하는 제도가 수질오염총량관리이다. 수질오염총량관리는 오염원에 대한 배출허용기준을 정하여 관리하는 농도중심의 수질관리로는 오염물질의 양이 늘어나 수질환경기준을 초과하는 제도적 한계 때문에 오염총량관리를 도입하는 제도이다. 개발을 위해서는 오염물질을 저감하여야 하는 환경과 개발의 조화를 추구하는 녹색성장의 패러다임과 일치하며 오염물질 배출 지역의 책임 및 배출한도를 관리하는 통합적이고 선진적인 수질관리 정책인 것이다. 이러한 수질오염총량관리의 제1단계가 2010년으로 끝나고 제2단계가 2011년 1월 1일부터 2015년 12월 31일까지 시행된다. 제1단계의 대상물질은 $BOD_5$이지만 제2단계는 $BOD_5$, T-P로 대상물질이 늘어난다. 따라서 제1단계를 적적히 평가하여 그 문제점 및 개선방향을 인식하고 제2단계, 제3단계가 적절히 수행될 수 있도록 하여야 한다. 따라서 본 연구에서는 영산강 수계를 대상으로 제1단계 수질오염총량관리를 평가하기 위해 만족도 평가, 전과정 평가, 수질개선 평가, 개발 및 삭감실적 평가, 할당부하량 준수 여부 평가, 경제성 평가 등의 방법을 개발하였다.

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The Economic Efficiency Assessment of Infrastructure considering Environmental Cost - A Case Study of Emergency Spillway for Korean Multipurpose Dam - (환경비용을 고려한 공공시설물의 환경경제성 평가 -국내 다목적댐 비상여수로 시설 사례연구 -)

  • Kwun, Suk-Hyun;Kim, Sang-Bum
    • Korean Journal of Construction Engineering and Management
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    • v.8 no.3
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    • pp.168-176
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    • 2007
  • This study aims to provide useful information when making a decision for the environmental and economic efficiency assessment of infrastructure, based on Life Cycle Assessment(LCA). It estimates environmental cost on environmental pollutants that are possible to happen by locations and by types of emergency spillway for korean multipurpose dam, which is selected as a study case. For this purpose, this study examines the theories of LCA and Contingent Valuation Method(CVM) and suggests an analysis model of environmental cost. To apply the suggested analysis model of environmental cost for infrastructure to the case study of emergency spillway at the multipurpose dam, this study calculates environmental load on environmental pollutants that generate during life cycle, converts it to a cost to predict environmental cost, evaluates environmental economy of emergency spillway by the estimated result, and draws the optimum alternative that is environmental-friendly and economic.

Life Cycle Assessment of Part Reuse/Recycling in the End-of-Life Stage of Personal Computers (부품 재사용 여부에 따른 폐컴퓨터에 대한 전과정평가(LCA))

  • Lim, Hyeong-Soon;Yang, Yun-Hee;Song, Jun-Il;Lee, Kun-Mo
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.5
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    • pp.494-500
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    • 2006
  • Life Cycle Assessment(LCA) is an environmental assessment tool for evaluating environmental burdens associated with products, processes and activities from the raw material acquisition stage to the end-of-life stage. End-of-life stage as well as other processes requires a reliant database in order to increase the confidence in the LCA results. In this study, the flow of Personal Computer(as PC) in the end-of-life stage was examined and the database of two scenarios has been established, i.e. one is part reuse and the other is no part reuse, in the end-of-life phase of PC. Also, key environmental issues were identified by carrying out LCA on a PC in the end-of-life phase for eight environmental impact categories. The 'ozone layer depletion' contributes the highest environmental impact due to generation of $Cl_2$ gas during the incineration of waste plastics. In addition, the scenario 1(part reuse) is more environmentally sound than the scenario 2(no part reuse) when comparing two scenarios.

The Development of Korean Life Cycle Impact Assessment Index Based on a Damage Oriented Modeling (한국형 피해산정형 전과정 영향평가 지표 개발)

  • Park, Pil-Ju;Kim, Mann-Young
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.5
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    • pp.499-508
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    • 2010
  • This study proposed a life cycle impact assessment index that can indicate the environment-related information of the product in monetary value such that the national geographical, environmental, and social features are fully reflected based on a damage-oriented model. First, the estimation process was classified into characterization, damage assessment, and integration stages considering the six biggest impact categories: resource depletion, global warming, ozone depletion, acidification, eutrophication, and photochemical oxidant creation. Moreover, this study came up with the 16 category endpoints related to the 6 impact categories, and the damage function, to the 4 largest safeguard subjects. The integration indices of finally identified impact categories were KRW 21.8/kg Sb, KRW 6.19/kg$CO_2$, KRW 53,000/kg CFC-11, KRW 13,100/kg $SO_2$, KRW 2,310/kg ${PO_4}^{3-}$, and KRW 3,030/kg $C_2H_4$. Using the results of this research, environmental impacts based on the environmental load generated throughout the entire life cycle of a product can serve as a single index in monetary value; thus enhancing understanding and utilization of the results of life cycle impact assessments.

Environmental Life Cycle Assessments on Nano-silver Inks by Wet Chemical Reduction Process (습식환원법으로 제조한 은나노 잉크의 환경 전과정 평가)

  • Lee, Young-Sang;Hong, Tae-Whan
    • Clean Technology
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    • v.21 no.2
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    • pp.85-89
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    • 2015
  • Utilized in a variety of electronic components, electronic components industry with metallic ink technology was established itself as a major technology research and development was gradually increasing, silver ink that is excellent in conductivity and stability, have long been used in the industry of electronic components in recent years and silver ink has been the size of nanoscale particles dispersed by developing display, an electronic tag, a flexible circuit board or the like used in the semiconductor and electronics as has been highlighted in, however industry modernization of equipment by increasing the production and consumption of products generated during the production process and environmental pollutants by use of waste products is expected to bring a serious environmental problem. In this study, prepared by a wet reduction method, the manufacturing process of the silver nano-ink to the entire process of the environmental impact assessment (LCA) was evaluated using the techniques. Life cycle assessment software GaBi 6 was used as received from the relevant agencies of the silver nano-ink data with reference to the manufacturing process, building inventory was international organization for standardization (ISO) 14040, 14044 compliant LCA conducted over four stages.

Material Life Cycle Assessments on Mg2NiHx-CaO Composites (Mg2NiHx-CaO 수소 저장 복합물질의 물질 전과정 평가)

  • HWANG, JUNE-HYEON;SHIN, HYO-WON;HONG, TAE-WHAN
    • Transactions of the Korean hydrogen and new energy society
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    • v.33 no.1
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    • pp.8-18
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    • 2022
  • With rapid industrialization and population growth, fossil fuel use has increased, which has a significant impact on the environment. Hydrogen does not cause contamination in the energy production process, so it seems to be a solution, but it is essential to find an appropriate storage method due to its low efficiency. In this study, Mg-based alloys capable of ensuring safety and high volume and hydrogen storage density per weight was studied, and Mg2NiHx synthesized with Ni capable of improving hydrogenation kinetics. In addition, in order to improve thermal stability, a hydrogen storage composite material synthesized with CaO was synthesized to analyze the change in hydrogenation reaction. In order to analyze the changes in the metallurgical properties of the materials through the process, XRD, SEM, BET, etc. were conducted, and hydrogenation behavior was confirmed by TGA and hydrogenation kinetics analysis. In addition, in order to evaluate the impact of the process on the environment, the environmental impact was evaluated through "Material Life Cycle Assessments" based on CML 2001 and EI99' methodologies, and compared and analyzed with previous studies. As a result, the synthesis of CaO caused additional power consumption, which had a significant impact on global warming, and further research is required to improve this.