• Title/Summary/Keyword: Waste Plastics Recycling

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Current Status of the Treatment of Used Plastics in Japan (일본의 폐플라스틱 처리현황)

  • Masahiro, Murakami
    • Resources Recycling
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    • v.6 no.2
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    • pp.5-11
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    • 1997
  • It presents the amounts of used plastics praduccd in recent years in comparison with the total municipal waste sewage produced in lapan. 'Ex needs of appropriate policies and guidelines to handle various used plastic mzterials are presened and haw such policies and guidelines are currently being mapped out in Japan is also described.

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

  • Yang, Hyunseok;Kim, Geon-Hong;Kong, Man-Sik;Park, Kiejin;Lee, Gwang Weon;Kim, Bo Saeng
    • Resources Recycling
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    • v.22 no.4
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    • pp.70-80
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    • 2013
  • Waste refrigerator is the most large amount of item being recycled and the recycling process is the most complicated in WEEE (Waste Electrical and Electronic Equipment) because refrigerator is biggest product and consists of various parts and materials such as ferrous, non-ferrous, and plastics. Recently, recycling process of waste refrigerator has been being more complex since large capacity 2 door refrigerators and standing Kimchi refrigerators with various material are distributed on custom market. In addition, recycling of valuable resource from waste refrigerator is mandatory by WEEEs recycling legislation; therefore, high efficiency recycling enough for economic and environment-friendly recovery of valuable resource through present technical situation analysis and comparison of recycling technologies of waste refrigerator with advanced country.

Development of Eco Burner Ash Melting Furnace System

  • Sekiguchi, Yoshitoshi;Hamabe, Kohei;Momoda, Shigeru
    • Proceedings of the Korean Institute of Resources Recycling Conference
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    • 2001.05b
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    • pp.19-22
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    • 2001
  • In recent years, the creation of waste recycling society has been required to cope with the traditional ways of waste treatments. In accordance with the package recycling law in force, calls for the developments of new waste treatment techniques suitable for 21st century are growing higher. A new ash melting furnace system named Eco Burner Ash Melting Furnace System has been developed. It is a burner type ash melting system in which the fluffs made of the plastics segregated from municipal solid wastes are directly fired at high temperature in the furnace. This system provides an economical ash melting system because plastic wastes or paper scraps that have heretofore been considered hard to recycle are used in compensation for fossil fuel. In this paper, we describe the ash melting test results obtained from a substantiative facility.

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Characterization of household solid waste and current status of municipal waste management in Rishikesh, Uttarakhand

  • Rawat, Suman;Daverey, Achlesh
    • Environmental Engineering Research
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    • v.23 no.3
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    • pp.323-329
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    • 2018
  • The municipal solid waste (MSW) management system in one of the Class II Indian cities i.e. Rishikesh was studied and analysed to identify the key issues in solid waste management in the city. A total of 329 solid waste samples from 47 households were collected to characterize the household solid waste (HSW). The average (HSW) generation rate was 0.26 kg/c/d and it was composed of organic waste (57.3%), plastics (14%), paper (10.9%), and glass and ceramic (1.3%) and other materials (16.5%). There was an inverse relationship between household waste generation rate and family size (p < 0.05). The MSW management system practiced in Rishikesh is unsound. There is no waste segregation at source, no provisions of composting and no recycling by formal sector. The collection and transportation of waste is inadequate and inappropriate. Collected waste is dumped in open dumping site without scientific management. Following are some recommendations for developing a sustainable solid waste management system in Rishikesh city: (1) sensitize people for segregation at source; (2) promote reduction, reuse and recycling of wastes; (3) promote community based composting; (4) provision for 100% door to door collection and; (5) formalize the informal sectors such as rag pickers and recycling industries.

Potential Dioxin and Furan Sources from Hospital Solid Waste Streams : A Pilot Study

  • Lee, Byeong-Kyu;Fraso, Rafael-Moure;M
    • Journal of Korean Society for Atmospheric Environment
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    • v.11 no.E
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    • pp.13-21
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    • 1995
  • This Pilot study identifies potential dioxin and furan sources and medical plastic wastes produced from hospital solid waste streams. In this study, air emissions of dioxins and furans from sources in the U.S., which were estimated by the U.S. Environmental Protection Agency (EPA), were summarized. Potential loading routes of dioxins and furans to the U.S.-Canada Great Lakes region have also been identified in trcent surveys. In addition, medical and hospital solid wastes produced in typical large city hospitals were characterized as important potential sources of dioxins and furans. Plastic contents in medical Plastics Characterization Survey (MMPCS), plastics composition data were obtained from a survey of five Massachusetts Hospitals and Medical Centers. By identifying plastic wastes as a percentage of total hospital wastes, we were able to use data from a preliminary study that analyzed the waste stream of 16 major New York City hospitals (NYCMWS) characterizing the plastic content of the wasters. This study determined the types of plastic wastes included in each medical waste stream (regulated medical waste or non regulated medical waste) and it discussed the potential for recyclibility of hospital plastic wastes. The combination of the NYCMWS and the MMPCS surveys provides for the first overview of the size of the recycling task of hospital plastic wastes and the potential of dioxin elimination if dioxin generating plastics were to be eliminated from hospital use.

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Mechanical Properties and Thermal Stability of Waste PVC/HDPE Blend Prepared by Twin-screw Extruder

  • Lee, Rami;Park, Se-Ho;Baek, Jong-sung;Kye, Hyoungsan;Jhee, Kwang-Hwan;Bang, Daesuk
    • Elastomers and Composites
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    • v.54 no.1
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    • pp.7-13
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    • 2019
  • Recycling of waste polyvinyl chloride plastics has attracted much attention due to environmental problems, but the poor mechanical properties, low thermal stability, frequent breakage of strands, and melt cracking of the waste plastics have limited their widespread use. To overcome these disadvantages of waste PVC (W-PVC), recycled PVC powder blend was prepared by adding high-density polyethylene (HDPE) and ethylene vinyl acetate (EVA) as a heat stabilizer and compatibilizer, respectively. An intermeshing co-rotating twin screw extruder was used to prepare the blend, and the characteristics of the blend were analyzed by SEM and TGA, and by using a UTM and Izod impact tester. The impact strength was improved as the EVA content increased for the W-PVC/HDPE (80/20 wt%) blend. As the HDPE and EVA contents increased in the W-PVC/HDPE/EVA blend, the impact strength increased. SEM observations also revealed the improved interfacial adhesion for the EVA-containing blend.

Injection moldable material utilizing shell waste and recycled polyethylene (貝角 廢棄物과 混合 廢플라스틱을 이용한 射出用 素材에 대한 硏究)

  • Chong, Mie-Hwa;Chung, Yong-Chan;Chun, Byoung-Chul;Cho, Bong-Gyoo
    • Resources Recycling
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    • v.14 no.3
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    • pp.55-62
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    • 2005
  • Mechanical properties of shell powder containing mixed recycled plastics were investigated depending on the shell content and surface modification. First, shell powder and LDPE were compounded using the twin screw extruder to manufacture 40 wt% master batch(M/B), and the M/B was blended with LDPE to produce bulk specimens with 10, 20, 30 and 40 wt% shell content. To improve the compatibility of shell powder with mixed recycled plastics matrix, surface of shell powder was chemically modified with cations or cationic surfactant. Surface modified shell was also used to prepare bulk specimens with the same shell content. Mechanical property analysis showed obvious improvement for the surface modified shell containing bulk specimens compared to unmodified ones. These results can lead to the development of new applications for the mixed recycled plastics.

Current Status and Prospect on the Recycling of Municipal Solid Waste in the United States (미국(美國)의 도시생활(都市生活)쓰레기 재활용(再活用) 현황(現況)과 전망(展望))

  • Song, Young-Jun;Lee, Gye-Seung;Shin, Kang-Ho;Kim, Youn-Che;Seo, Bong-Won
    • Resources Recycling
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    • v.20 no.5
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    • pp.3-15
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    • 2011
  • This study describes the national municipal solid waste stream of the United States based on data collected and published by EPA for 1960 through 2009. This paper characterizes the municipal solid waste stream of the nation as a whole, and can be useful for understanding the nationwide stream of America. Among the various materials contained in MSW, recycling status of the major materials of paper and paperboard, glass, metals, plastics, food scraps and yard trimmings are discussed somewhat more minutely.

Comparison of Waste-Plastic Recycling Methods for Environmental Assessment (환경성 평가를 위한 폐플라스틱 재활용 방법들의 비교)

  • Park, Chan-Hyuk;Choi, Suk-Soon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.14 no.2
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    • pp.101-111
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    • 2006
  • In the present work, life cycle assessments (LCA) of various waste-plastic recycling methods (material recycling, refused derived fuel (RDF), recycling on furnace, and pyrolytic oil production) were carried out to investigate their impacts on the environment. Six types of impacts were considered. While the impact on global warming was found to be significant, the impact on others were negligible. The impact values on the global warming caused by the material recycling, RDF, and the recycling on furnace were negative, which implied that their impacts could be noticeably reduced when waste-plastic are used as an alternative to newly drawn plastics. The pyrolytic oil production, however, showed positive value, which may be due to the carbon dioxide produced during electric power generation. The pyrolytic oil production had the largest impact on the ozone layer destruction, which was due to ozone depleting substances produced from the process itself. These results can be used as a useful data for the enhancement of waste-plastic recycling.

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