• 제목/요약/키워드: resource recovery and recycling

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(주)BYN블랙야크의 ESG 경영 실천 사례 : 국내 투명 페트병 자원순환 시스템을 중심으로 (ESG Management Practice Led by BYN Black Yak: The Resource Circulation System for Recycling Domestic Transparent PET Bottle)

  • 강태선;김연성;정회욱
    • 품질경영학회지
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    • 제49권3호
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    • pp.433-446
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    • 2021
  • Purpose: The main purpose of this study is to analyze the case of the transparent PET bottle resource circulation project of BYN Black Yak Co., Ltd., present implications, and propose ways to spread it in the future. Methods: In this study, the logic of the Double Diamond Model is applied to analyze the development process of sustainable fashion made from BYN Black Yak Co., Ltd.'s PET Bottle Resource Circulation System. Results: The K-rPET Resource Circulation Project of BYN Black Yak Co., Ltd. is recognized as a best example for its contribution to eco-friendly activities, solving social problems, raising consumer awareness, and sharing recycling habits. Before the plastic bottle becomes a garment, five steps are taken (discharge of PET bottle → collection of PET bottle → recycling of PET bottle → fabrication of yarn → production of the finished product out of the fabric). BYN Black Yak Co., Ltd. has successfully commercialized it by recycling reverse-recovery PET bottles by making solutions to problems that have not been solved at each stage. Conclusion: In addition to efforts to find and strengthen weak links presented in the Theory of Constrains (TOC), it appears to have systematically carried out activities to convert stakeholder discomforts into a package of gain points. As shown in the slogan "We are all in!" the proposal and implementation for the completion of a true environmental system is judged to have truly performed ESG management well for the company's business. ESG management activities at BYN Black Yak Co., Ltd. are expected to continue.

D시 생활폐기물 관리 방법과 온실가스 배출량과 감축량 산정 연구 (A Study of Estimation of Greenhouse Gas Emission and Reduction by Municipal Solid Waste (MSW) Management)

  • 윤현명;장윤;장용철
    • 한국폐기물자원순환학회지
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    • 제35권7호
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    • pp.606-615
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    • 2018
  • Over the past two decades, the options for solid waste management have been changing from land disposal to recycling, waste-to-energy, and incineration due to growing attention for resource and energy recovery. In addition, the reduction of greenhouse gas (GHG) emission has become an issue of concern in the waste sector because such gases often released into the atmosphere during the waste management processes (e.g., biodegradation in landfills and combustion by incineration) can contribute to climate change. In this study, the emission and reduction rates of GHGs by the municipal solid waste (MSW) management options in D city have been studied for the years 1996-2016. The emissions and reduction rates were calculated according to the Intergovernmental Panel on Climate Change guidelines and the EU Prognos method, respectively. A dramatic decrease in the waste landfilled was observed between 1996 and 2004, after which its amount has been relatively constant. Waste recycling and incineration have been increased over the decades, leading to a peak in the GHG emissions from landfills of approximately $63,323tCO_2\;eq/yr$ in 2005, while the lowest value of $35,962tCO_2\;eq/yr$ was observed in 2016. In 2016, the estimated emission rate of GHGs from incineration was $59,199tCO_2\;eq/yr$. The reduction rate by material recycling was the highest ($-164,487tCO_2\;eq/yr$) in 2016, followed by the rates by heat recovery with incineration ($-59,242tCO_2\;eq/yr$) and landfill gas recovery ($-23,922tCO_2\;eq/yr$). Moreover, the cumulative GHG reduction rate between 1996 and 2016 was $-3.46MtCO_2\;eq$, implying a very positive impact on future $CO_2$ reduction achieved by waste recycling as well as heat recovery of incineration and landfill gas recovery. This study clearly demonstrates that improved MSW management systems are positive for GHGs reduction and energy savings. These results could help the waste management decision-makers supporting the MSW recycling and energy recovery policies as well as the climate change mitigation efforts at local government level.

Separation of Silicon and Silica by Liquid-Liquid Extraction

  • Fujita, Toyohisa;Oo, Kyaw-Zin;Shibayama, Atsushi;Miyazaki, Toshio;Kuzuno, Eiichi;Yen, Wan-Tai
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.719-724
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    • 2001
  • The objective of this investigation was to separate silicon and silica for recycling by the liquid-liquid separation technique. In the preparation of silicon (Si) single crystal, a small amount of silicon is fixed on the surface of silica (quartz, $SiO_2$) crucible. The used crucible is crushed for recycling both silicon and silica in a high purity from the mixed powder. Zeta-potential of silicon and silica are almost the same at pH higher than 3. Their separation by simple flotation is ruled out. However, their hydrophobic characteristics are different in several different organic solvent from the measurement of contact angle. Therefore, the liquid-liquid extraction is employed to separate silicon and silica. The result indicates that the organic solvent mixed with dodecyl ammonium acetate could extracted the silicon powder at high purity (97-100%) with high recovery from the silica powder in the water phase.

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폐(廢) 냉장고(冷藏庫) 재활용(再活用) 현황(現況)과 기술(技術) 전망(展望) (Overview and Recent Development of Recycling Waste Refrigerators)

  • 양현석;김건홍;공만식;박기진;이광원;김보생
    • 자원리싸이클링
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    • 제22권4호
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    • pp.70-80
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    • 2013
  • 냉장고는 폐 전기전자제품(WEEE)에서 가장 많은 양이 처리되고 있는 품목이며 또한 가장 재활용이 복잡한 공정이다. 이는 가전제품 중 부피와 중량이 가장 크며 철, 비철금속, 플라스틱(PP, PS, ABS)등으로 이루어진 다양한 부품과 소재를 사용하고 있기 때문이다. 특히 최근에는 대용량 양문형 냉장고나 스탠드형 김치냉장고 등의 새로운 모델 출시와 더불어 다양한 혼합 재질의 사용으로 인해 폐 냉장고 재활용 공정의 어려움이 더욱 증가되고 있다. 뿐만 아니라 국내외 WEEE 재활용 관련 입법의 도입으로 폐 냉장고의 재활용 및 재자원화는 필수이고 관련 자원순환기술개발은 국가 기술경쟁력의 강화 및 국제 환경규제 대응 측면에서도 매우 중요하다고 할 수 있다. 따라서 현재 우리나라의 폐 냉장고 재활용 처리 및 기술개발 현황을 분석하고 선진국의 재활용 기술을 비교 분석하고자 한다.

음식물류폐기물 공공 자원화시설 운영에 관한 연구 (I) - 운영현황과 문제점을 중심으로 - (Study on the Public Food Waste Recycling Facility Operation (I) - Focusing on the Current State of Operation and the Problems -)

  • 홍용표;김혜선;김웅용;신현곤
    • 유기물자원화
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    • 제24권1호
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    • pp.41-49
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    • 2016
  • 본 연구는 음식물류 폐기물 공공 자원화 시설 운영의 문제점과 제도 개선방안을 위하여 실시하였다. 기존 음식물류 폐기물 공공자원화 시설에 대한 실태조사를 통해 운영에 따른 문제를 분석하였으며, 이를 위하여 음식물류 폐기물의 발생량 및 자원화 현황, 공공 및 민간 자원화시설 현황, 전국의 주요 음식물류 폐기물 공공 자원화 시설의 실제 운영과정에서 나타난 문제점을 분석한 결과는 다음과 같다: 현재 국내 음식물류 폐기물의 분리 수거량은 약 97%인 것으로 나타났다. 그리고 대부분의 공공 자원화시설은 음식물류 폐기물의 자원화가 아닌 단순처리에 급급한 것으로 나타났으며 경제성도 없는 것으로 분석되었다. 특히, 바이오가스시설 대부분은 실시설계와는 달리 가스 생산량 및 수요량이 전혀 맞지 않는 것으로 나타났다.

인쇄회로기판(印刷回路基板) 제조공정(製造工程)의 폐(廢) Back Board 및 금(金) 회수(回收) (Recovery of Waste Back Board and Gold from the Process of Printed Circuit Board)

  • 김유상
    • 자원리싸이클링
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    • 제19권1호
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    • pp.57-65
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    • 2010
  • 최근, 인쇄회로기판 제조공정으로부터 유가자원을 회수하고자 하는 연구가 활발히 진행되고 있다. 인쇄회로기판의 드릴가공 받침대로 사용한 후 폐기되는 백보드 소재활용과 소형화, 고 신뢰성화에 따른 유가금속인 금 회수가 필수적이다. 특히 이동통신용 전자부품의 핵심소재로 사용되는 인쇄회로기판부품에는 최소 0.03 ${\mu}m$에서부터 최대 50 ${\mu}m$ 두께로 금이 도금되어 있다. 금, 원자재, 약품 값 폭등으로 생산현장의 유가자원 활용이 중요한 과제로 대두되면서 유가자원 활용을 위한 경쟁이 가속화되는 추세다. 본고에서는 인쇄회로기판 제조공정에서 발생하는 폐백보드 및 금의 회수에 대한 기술동향을 제공함으로써 유가자원 활용 산업발전에 기여하고자 하였다.

戰略金屬 스크랩 資源化를 위한 코발트 物質흐름 現況調査 (Investigation on the Material Flow of Cobalt for Resource Recovery and Recycling of Strategic-Metal Scrap)

  • 손정수;양동효;신선명;강은희
    • 자원리싸이클링
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    • 제14권2호
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    • pp.43-55
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    • 2005
  • 세계의 인구증가와 경제성장에 따라 천연자원 특히 전략금속의 수요가 급격히 증가하고 있다. 국가가 보유하고 있는 자원의 양은 천연자원 뿐 아니라 재활용을 통하여 얻을 수 있는 폐자원을 함께 포함해야 한다. 본 연구에서는 전략금속의 안정적 확보와 폐자원의 효율적 재활용을 위하여 코발트의 국내외 사용현황 등을 조사하였으며 아울러 미국 내에서의 코발트 물질흐름에 대한 자료를 정리하였다. 그 결과 미국에서는 2003년도에 약 8,000톤의 코발트가 사용되었으며 원료로 재사용된 스크랩의 양은 총사용량의 28%인 2,200톤이었다. 미국의 경우 초합금과 촉매의 재활용은 잘 이루어지고 있으나 자석류와 초경합금의 경우 재활용율이 다소 낮음을 알 수 있었다.

Opportunities and Challenges in Metals Recovery from Secondary Sources - US Perspective

  • Han, Kenneth N.
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.3-8
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    • 2001
  • The mineral industry of the United States is going through a challenging time. The US as an industrial nation faces with increasing demand in raw materials to fuel various industrial sectors but, at the same time, meeting environmental constraints associated with excavating and extracting these raw materials. In addition, gradual depletion of material resources. and the necessity of handling more complex forms of resources of primary origin have led to a decline in her resource productivity, once a strategic advantage of the U.S. As a result. the United States currently relies heavily upon foreign importation of various materials such as precious and strategic metals. However, since the US is the major consumer of most of these materials, the recovery of these values from scrap would help renew her position as a resource-producing nation, and ultimately help spur its domestic economy. Furthermore. recycling would also help maintain a clean environment and reduce energy consumption. In this paper. the author attempts to discuss opportunities and challenges lied ahead of the US mineral in relation to recovering their much-needed resources from secondary sources. The need and demand in various metals in the US will be reviewed and discussed. The implication of resource recovery from secondary sources will also be discussed. Extraction methods treating secondary sources are inherently different from those for primary sources. There is a need for new technologies which are metallurgically efficient and environmentally benign in treating secondary sources. Ways to meet such a need will be examined and key factors to be considered in approaching these challenges will be discussed.

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국내 사용 후 화학촉매제품의 재자원화 현황 및 향후 방향 (Status and Strategy on Recycling of Domestic Used Chemical Catalysts)

  • 김영춘;강홍윤
    • 자원리싸이클링
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    • 제26권3호
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    • pp.3-16
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    • 2017
  • 화학촉매제품은 석유화학공정, 대기오염방지시설, 자동차 배기가스 정화 장치 등 다양한 분야에 적용되고 있다. 국내외 화학촉매 시장은 매년 증가하고 있는 추세이며, 그에 따라 발생되는 폐촉매량도 증가하고 있다. 탈황 폐촉매, 자동차 폐촉매 등 대부분의 사용 후 화학촉매제품은 유가금속을 함유하고 있어 경제적 가치와 자원 확보 측면에서 매우 중요한 순환자원이다. 이에 일부 도시광산업체를 통해 유가금속을 회수하는 재자원화 공정이 상용화 되어 있고, 사용 후 SCR 탈질 촉매제품은 일부 재제조를 통해 자원순환되고 있다. 이에 본 논문에서는 사용 후 화학촉매제품의 재자원화 산업 지원 정책 수립의 기초자료로 활용이 가능하도록 주요촉매제품별 국내 발생량 및 재자원화 현황을 조사 분석하였으며, 사용 후 화학촉매제품의 자원순환 활성화를 위한 발전과제를 제시하였다.

Recovery sub micron-graphitized carbon from oil fly ash

  • Hsieh, Ya-Min;Tsai, Min-Sing;Tsai, Shang-Lin
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.633-637
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    • 2001
  • Oil fly ash is known as one source of raw materials from which vanadium and nickel metals can be recovered. The current recovery process of valuable metals from oil fly ash is mainly the hydrormetallurgy one. Nevertheless, a great amount about 50~80%, of unburned carbon remains as byproduct after hydrormetallursy process. In Taiwan, if hydrormetallursy processes have proceeded, it can be estimated that the annual production of unburned carbon is 25 thousand tons. From the viewpoint of resource recycling, this study is a preliminary study and investigates in recovery of sub micron- graphitized carbon from unburned carbon by a designed process. The designed process included the following steps: 1.selecting a portion with +400mesh size from unburned carbon; 2.treating the selected in ultrasonic waves; 3.using a 400mesh sieve to obtain the product which is under 400mesh; 4.Removal ash from the product. In regard to treatment by ultrasonic waves in the designed process, treating time of ultrasonic waves is a simple and only variance in this study. The results indicate that the production yields increase with the treating time of ultrasonic waves; the production yield in specific conditions of this study can reach about 23%, in which ash content in product is about 2.5%. According to results of SEM, TEM and XRD, the products from the designed process are flakes in shape, several microns in size and graphitized carbon in carbon crystal phase. Except to graphitized carbon, there are a little carbon blacks, which are graphite 2H in carbon crystal phase in the products. Conclusively, the designed process is possibly applicable, by which comes to the recovery of micron- graphitized carbon.

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