• Title/Summary/Keyword: Recycling Rate

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자동차 재활용의 진보 - 자동차 재활용율 95%의 탐색 - (Improvement of ELV Recycling Technology - Focused on achievement of ELV recycling rate 95% -)

  • 오재현
    • 자원리싸이클링
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    • 제23권2호
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    • pp.71-80
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    • 2014
  • ELV 리싸이클링비율 95% 달성을 탐색하기 위하여 리싸이클링비율의 정의, 자동차의 구성자료, 최근의 해체공정 개발 및 ASR 재활용의 현황을 조사하였다. 그리고 인천폐차사업소와 H폐차사업소의 해체현황을 실사하였다. 해체기술의 개발에 의하여 해체공정에서 94%의 물질재활용율에 근접하고 있으나 ASR의 리싸이클링은 시멘트업계의 사용금지 이후 처리 행방이 모호한 상태이다. 즉 ELV 리싸이클링비율 95% 달성에 ASR 리싸이클링이 걸림돌로 작용하고 있으므로 ASR 에너지 재활용을 적극 추진해야 한다.

폐식용유로 제조된 재생비누의 생분해 속도 (Biodegradation Rate of Recycling Soap Prepared from Non-Cooking Oils)

  • 신춘환;김희숙;허근태
    • 한국환경과학회지
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    • 제5권1호
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    • pp.83-91
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    • 1996
  • A recycling soap was prepared from non-cooking oils. The effects of physlcal and chemical properties of the recycling soap on biodegradation are expected to be different due to the thermal histories of the non-cooking oils. Therefore, the biodegradation rate of the recycling soap was studied by using Klebssella Pneumoniae(K. pneumoniae), and the growth rate of K. pnewoniae in soap solution was observed. The biodegradation rate of the recycling soap appeared to be slower as the thermal histories of the non-cooking oils became larger. This might be resulted from hydrolysis, in which the ester bonds in the oils are broken to produce hydroxyl group. It was also observed that the growth rate of the microorganism decreased with the increase in the thermal histories of the oils. As a result, it is desired that recycling soap should be produced from the non-cooking oils with the prober ranges of thermal histories to reduce water contamination. The non-cooking oils with larger thermal histories are considered to be recycling through the cracking process before used. Key Words : non-cooking oils, recycling soap, thermal history, biodegradation, microorganism growth.

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EPR 신규 대상품목의 장기 재활용목표율 재산정에 관한 연구 (A Study on Recalculation of the Long-Term Recycling Rate of New EPR Target Items)

  • 이희남;최윤정
    • 대한안전경영과학회지
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    • 제13권4호
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    • pp.193-199
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    • 2011
  • In the past annual recycling obligation rate calculation of Extended Producer Responsibility (EPR) system, it was difficult to operate the system efficiently, because responsible producers passively participated in the scheme only bent on achieving annual obligation without long-term plan. Thus, a new scheme of long-term recycling obligation rate began to be established every five year from 2008 in order to give the basis for the notice of annual specific operation standard and recycling obligation, thereby helping responsible producers to make a preparation with a plan and giving expectation of active operation of the scheme. However, in the operation of long-term recycling target program, while the development of prediction models and the evaluation for existing items has been conducted in various ways, applications for a new target items and the evaluation are quite insufficient. Therefore, in this study, problems in implementing long-term recycling goal of new target items will be examined, and more objective and rational long-term recycling rate calculation and the operation standard will be proposed. Thus, the long-term recycling target will play a role as a pacemaker to steadily improve the recycling performance of target items, and responsible producers will be expected to increase the achievement with the realistic capacity.

연마 Recycling 시간에 따른 콜로이드 실리카 슬러리의 안정성 및 연마속도 (Effect of Recycling Time on Stability of Colloidal Silica Slurry and Removal Rate in Silicon Wafer Polishing)

  • 최은석;배소익
    • 한국세라믹학회지
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    • 제44권2호
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    • pp.98-102
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    • 2007
  • The stability of slurry and removal rate during recycling of colloidal silica slurry was evaluated in silicon wafer polishing. The particle size distribution, pH, and zeta potential were measured to investigate the stability of colloidal silica. Large particles appeared as recycling time increased while average size of slurry did not change. Large particles were identified by EDS(energy dispersive spectrometer) as foreign substances from pad or abraded silicon flakes during polishing. As the recycling time increased, pH of slurry decreased and removal rate of silicon reduced but zeta potential decreased inversely. Hence, it could be mentioned that decrease of removal rate is related to consumption of $OH^-$ ions during recycling. Attention should be given to the control of pH of slurry during polishing.

Recycle 시간에 따른 실리콘 연마용 슬러리 입자 및 연마 속도 (Influence of recycling time on stability of slurry and removal rate for silicon wafer polishing)

  • 최은석;배소익
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 추계학술대회 논문집 Vol.19
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    • pp.59-60
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    • 2006
  • The slurry stability and removal rate during recycling of slurry in silicon wafer polishing was studied. Average abrasive size of slurry was not changed with recycling time, however, large particles appeared as recycling time increased. Large particles were related foreign substances from pad or abraded silicon flakes during polishing. The removal rate as well as pH of slurry was decreased as recycling time increased. It suggests that the consumption of OH ions during recycling is the main cause of decrease of removal rate. Therefore, it is important to control pH of slurry to obtain optimum removal rate during polishing.

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폐자동차의 실질적 재활용률 산정을 위한 모니터링 체계에 관한 연구 (A Study on Monitoring System Architecture for Calculation of Practical Recycling Rate of End of Life Vehicle)

  • 박정환;이화조;박면웅;손영태
    • 청정기술
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    • 제18권4호
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    • pp.373-378
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    • 2012
  • 폐자동차는 재활용 자원의 주요 원천이며 단계별로 해체 재활용업자, 파쇄 재활용업자 및 파쇄잔재물 재활용업자 등 여러 주체가 재활용을 분담하고 있다. 우리나라는 2015년부터 법적으로 95% 재활용률 달성을 목표로 하고 있는데, 여러 가지 이유로 재활용 모니터링이 원활하지 않은 형편이다. 본 연구는 전기전자제품 및 자동차 재활용 시스템(EcoAS)과 연계하여 국내 폐자동차의 실질 재활용률 산정을 위한 모니터링 체계를 제안한다. 국내 대표 재활용업체를 선정 조사하여 도출한 재활용 시나리오를 바탕으로 표준 재활용률 DB를 구축하고, 이를 활용하여 실질 재활용률을 산출하고자 한다. 또한 차종별 표준 분리품 DB를 활용하여 해체단계의 중량 정보 기록 및 해체 부품 DB 업데이트를 지원함으로써 분리품 재활용 추적을 용이하게 한다.

공기부상반응조에서 체류시간과 반송율에 의한 유기물질 및 질소제거 향상에 관한 연구 (Improvement of Organics and Nitrogen Removal by HRT and Recycling Rate in Air Lift Reactors)

  • 김진기;유성환;임봉수
    • 한국물환경학회지
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    • 제22권1호
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    • pp.45-50
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    • 2006
  • This study was performed to evaluate the air lift reactors (ALR) by variations of HRT and recycling rate. Air lift reactor was composed of bioreactor and clarifier above it. To remove organic matters and nitrogen through the formation of microbic film and filtration, bio-filter reactors were filled with clay, glass, bead, waste plastic, respectively. Influent wastewater was fed to biofilter reactor, and effluent wastewater from bio-filter reactor was injected ALR again, instead of adding external carbon source. Effluent BOD concentration was satisfied with lower than 10 mg/L in recycling rate 100% regardless of the variation of HRT and the kinds of media materials. In HRT 4 hr, recycling rate 100%, BOD removal efficiency rate was from about 85 to 90%, COD removal efficiency rate was higher than 90%. Effluent TN concentration was satisfied with less than 20 mg/L, if HRT was maintained by over than 6 hr regardless of recycling rate and media materials. Over than HRT was 4 hr, microbes concentration in air lift reactor was maintained over than 2,500 mg/L constantly, not sensitive to environmental condition, and organic removal was effective as it was higher.

물질흐름분석을 통한 사업장폐기물의 실제적인 재활용률과 최종처분율의 산정 및 분석 (Calculation and Analysis of Actual Recycling Rate and Final Disposal Rate of Industrial Waste by Material Flow Analysis)

  • 오길종;조윤아;김지연;김기헌
    • 한국폐기물자원순환학회지
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    • 제35권8호
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    • pp.785-798
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    • 2018
  • Since the Framework Act on Resource Circulation was enacted in 2018, the government should establish a National Resource Circulation Master Plan every 10 years, which defines mid- to long-term policy goals and directions on the efficient use of resources, prevention of waste generation and recycling of waste. In addition, we must set mid- to long-term and stepwise targets for the final disposal rate, recycling rate (based on sorted recyclable materials and recycled products), and energy recovery rate of wastes, and relevant measures should be taken to achieve these targets. However, the current industrial waste (IW) statistics have limitations in setting these targets because the final disposal rate and recycling rate are calculated as the ratio of the recycling facility input to the IW generation. In this study, the material flow from the collection stage to the final disposal of industrial waste was analyzed based on the generation of 2016, and the actual recycling amount, actual incineration amount, final disposal amount and their rates were calculated. The effect on the recycling, incineration and final disposal rates was examined by changing the treatment method of nonhazardous wastes from the factory and construction and demolition wastes, which were put in landfills in 2016. In addition, the variation of the waste treatment charge was investigated according to the change of treatment methods. The results of this study are expected to be effectively used to establish the National Resource Circulation Master Plan and industrial waste management policy in the future in South Korea.

전기전자제품의 재활용가능률 산정을 위한 부품/소재의 재활용기준 정립에 관한 연구 (A Study on the Establishment of the Standards for the Recycling Rate of Parts and Materials to Calculate Recyclability Rate of Electrical and Electronic Equipments)

  • 이화조;강홍윤;김진한;심강식;김진호;한승철
    • 청정기술
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    • 제14권4호
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    • pp.232-241
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    • 2008
  • EU의 WEEE 지침에는 전기전자제품의 생산자들이 반드시 달성하여야 하는 재활용률과 재생률의 목표치가 설정되어 있다. 본 연구에서는 전기전자제품의 생산자들이 개발되는 제품의 재활용가능률과 재생가능률을 산정해 보는데 필요한 부품과 소재들의 재활용률과 재생률의 기준을 만들어 보았다. 먼저 전기전자제품의 재활용공정과 부품 및 소재별 재활용 및 재생특성을 분석해 보았으며, 유럽 현지 업체들의 처리결과에 따른 재활용률과 관련된 자료들을 조사하여 분석하였다. 이러한 결과로 작성된 재활용률과 재생률 DB는 유럽의 전문가의 의견을 반영하여 개선하였다.

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Physics analysis of new TRU recycling options using FCM and MOX fueled PWR assemblies

  • Cho, Ye Seul;Hong, Ser Gi
    • Nuclear Engineering and Technology
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    • 제52권4호
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    • pp.689-699
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    • 2020
  • In this work, new multi-recycling options of TRU nuclides using PWR fuel assemblies comprised of MOX and FCM (Fully Ceramic Micro Encapsulated) fuels are suggested and neutronically analyzed. These options do not use a fully recycling of TRU but a partial recycling where TRUs from MOX fuels are recycled while the ones from FCM fuels are not recycled due to their high consumption rate resulted from high burnup. In particular, additional external TRU feed in MOX fuels for each cycle was considered to significantly increase the TRU consumption rate and the finally selected option is to use external TRU and enriched uranium feed as a makeup for the heavy metal consumption in MOX fuels. This hybrid external feeding of TRU and enriched uranium in MOX fuel was shown to be very effective in significantly increasing TRU consumption rate, maintaining long cycle length, and achieving negative void reactivity worth during recycling.