• Title/Summary/Keyword: Recycling

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Recycling Cell Formation using Group Technology for Disposal Products (그룹 데크놀로지 기법을 이용한 폐제품의 리싸이클링 셀 형성)

  • 서광규;김형준
    • Proceedings of the Safety Management and Science Conference
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    • 2000.05a
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    • pp.111-123
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    • 2000
  • The recycling cell formation problem means that disposal products are classified into recycling part families using group technology in their end of life phase. Disposal products have the uncertainties of product status by usage influences. Recycling cells are formed considering design, process and usage attributes. In this paper, a novel approach to the design of cellular recycling system is proposed, which deals with the recycling cell formation and assignment of identical products concurrently. Fuzzy clustering algorithm and Fuzzy-ART neural network are applied to describe the states of disposal product with the membership functions and to make recycling cell formation. This approach leads to recycling and reuse of the materials, components, and subassemblies and can evaluate the value at each cell of disposal products. Application examples are illustrated by disposal refrigerators, compared fuzzy clustering with Fuzzy-ART neural network performance in cell formation.

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Recycling Technologies for Metal Processing - An Australian Perspective

  • Tran, Tam
    • Proceedings of the IEEK Conference
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    • 2001.10a
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    • pp.34-39
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    • 2001
  • Following the trends around the world in the 1990's, Australia has been promoting recycling as a means to reduce wastes and at the same time improve the economics of metal processing. Of significance to the metal processing industry is the recycling of steel and aluminium, mostly from cans collected from households. The recycling of cyanide during gold processing has also been evaluated extensively, involving many R&D activities currently conducted in several laboratories and commercial plants in Australia. This paper presents an overview of the above issues, evaluating facts and data collected on metal recycling. The technologies currently developed and evaluated for cyanide recycling are also discussed.

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The Influence of Lifestyle on Recycling of Package Wastes (생활양식이 포장폐기물 재활용 행동에 미치는 영향)

  • 조은미;최남숙
    • Journal of Family Resource Management and Policy Review
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    • v.7 no.1
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    • pp.119-133
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    • 2003
  • The purpose of this study, thesis is to find out the main cause which influences recycling behaviors regarding package wastes. For this purpose, it discusses the difference of recycling behaviors based on socio-demographic factors and lifestyle categories and, it analyzes the relative influencing power of socio-demographic factors and lifestyle on recycling. The results are as follow: First, recycling behaviors on grounds of socio-demographic factors showed considerable difference as regards to age and income. At the income level of 3 Million Won (per month) and the higher the age, recycling behaviors were well established. Second, recycling behaviors based on lifestyle categories demonstrated considerable difference. While the pragmatists and sincere-devoted showed quite positive recycling behaviors, the social activity-oriented and other-directed fashion-pursued did not. Third, the most influential factor on recycling was the parsimony-oriented lifestyles.

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Recycling of Polyurethane Scraps (폴리우레탄 스크랩의 재활용)

  • Kim, Han-Na;Lee, Dai-Soo
    • Elastomers and Composites
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    • v.47 no.2
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    • pp.104-110
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    • 2012
  • Depending on the states of polyurethane scraps generated in the production sites of polyurethane or recycling center of polyurethane scraps, appropriate recycling technologies can be employed for the recycling of resources. In this study, recycling technologies for the polyurethane scraps were classified into physical recycling, chemical recycling, and energy recycling and reports in the literatures were discussed.

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

  • 신춘환;김희숙;허근태
    • Journal of Environmental Science International
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    • v.5 no.1
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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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Optimizing Reverse Logistics Network for End-of-Life Electrical Appliances (폐가전제품 회수물류 네트웍 최적화)

  • Kim, Hyun-Soo;Ryu, Jae-Hwan;Hong, Min-Sun;Rim, Suk-Chul
    • IE interfaces
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    • v.20 no.2
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    • pp.154-161
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    • 2007
  • When the electrical appliances such as TVs and refrigerators become obsolete, they must be collected to the recycling centers to avoid environmental damages. The obsolete home appliances are first moved to the regional collection point; and then transported to one of the recycling centers. Each recycling center has a limited capacity; and some recycling centers can process only certain types of products. For given locations of the existing collection points and recycling centers, optimally assigning the obsolete home appliances of each type from each collection point to the recycling centers can significantly reduce the total transportation cost. We formulate this problem as an LP problem. We also present an approach to determine the locations of additional recycling centers in order to alleviate the over-utilization of the current recycling centers.

The Analysis of the recognition on recycling mark and method and the participation in recycling movement (재활용 표시와 재생경로에 대한 이해 및 참여도 분석)

  • 구수정
    • Hwankyungkyoyuk
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    • v.11 no.1
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    • pp.165-180
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    • 1998
  • The purpose of this study is to investigate how much people recognise and participate in wastes recycling and to give suggestions for systematic environmental education on the recycling. Subject's recognition degree on recycling mark which had been established by The Ministry of Environment in 1995 was very low and the recycling mark should be educated because it would help people consider the environmental factor when purchase goods which are recyclable or not. They acknowledged simple recycling methods of recyclable goods much but not the complex methods of them. So they need the systematic education on recycling method through which continuous participation of them would be arisen. In the while there is no mention about recycling mark in textbooks which are currently used in Korean elementary schools, middle schools and high schools. Not only the mark but also any kind of environmental information should be updated in environmental textbooks/learning materials to cultivate students environmental literacy to meet current environmental issues dynamically and solve environmental problems in the future successfully.

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A Study on the Determination of Recycling Standard and Stage in Paper Scrap (폐지 재활용 기준 및 재활용 단계 설정에 관한 연구)

  • Min, Dal-Ki;Seo, Kwang-Seok
    • Journal of Environmental Health Sciences
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    • v.39 no.3
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    • pp.248-255
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    • 2013
  • Objectives: The purpose of this paper is to define the level of recycling standards and its process in paper scrap. As pollution is increased by improperly treated paper scrap, the government has recently strengthened the management of the paper scrap. Methods: In this study, the current status of paper scrap recycling was investigated through a 2012 field survey, and the classification and recycling standards for paper scrap in developed countries and institutions were also investigated through a literature review in order to introduce optimal recycling standards. Results: As a result, the contents of contaminants were identified as the most important recycling standard, and the contents of contaminants in paper scrap was measured at less than 1.0% at most companies. The recycling standard for paper scrap was determined to be below 3% contaminants in the case of paper and 5% in the case of board. In this study, recycling stage was determined by considering regulations on resources and practices in the field. Conclusions: The recycling standard for paper scrap was determined to be below 3% and 5% contaminants for paper and board, respectively.

A Study on Area Types of Recycling Agriculture (지역별 순환농업의 유형에 관한 연구)

  • 조익환
    • Korean Journal of Organic Agriculture
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    • v.11 no.3
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    • pp.91-108
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    • 2003
  • So far, we have pursued only convenient and efficient growth of economy, as a result, environment surrounding us has been destroyed and the rights of our existence gotten to be even threatened. We need to ensure our lives and at the same time, need a power with which agriculture undertakes global circulation structure and a power that is able to preserve our environment we live per so. Therefore, in the near future, the final objectives of agriculture structure for 21st century would be to increase productivity of highly developed agricultural products in accordance with the ecosystem and a recycling agriculture. What is a recycling agriculture\ulcorner In the narrow sense, it means provisions-producing- system related to interactive recycle of material among forestry, livestock husbandry and seeding agriculture. In the broad sense, it means to produce credible agricultural product by keeping balanced resources via conversion to complete degradable material of organic wastes produce within rural village. Based on this concept, finally, our goal is to construct the resources recycling community. Environment friendly agriculture ⇒ organic agriculture ⇒ recycling (circulation) agriculture ⇒ construction of community with resources recycling. Therefore, in order to construct recycling agriculture, most of all, it is considered that the following, it should be established reasonable standard amounts for fertilizer, manure and liquid fertilizer based on results of soil test by each region, nature-recycling form of crops production and livestock production systems by maximizing utilization of different recycling byproducts occurring in the crop producing process by each region.

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Appropriate Technology for the Paper Recycling: A New Paradigm

  • Vu, Hong Ha Thi;Lai, Tuan Quang;Ahn, Ji Whan
    • Journal of Energy Engineering
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    • v.27 no.2
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    • pp.81-88
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    • 2018
  • Every day a huge amount of paper is being used, most of them are thrown after using. This directly impacts on the environment. Therefore, waste paper management is necessity to protect the environment from its annihilation and pollution. Paper recycling products consist of printing paper, newspaper, corrugated containers, magazine paper and so on. Reuse waste paper will reduce the consumption of wood and virgin pulp as recycling one ton of newsprint can save approximately 1 ton of wood, meanwhile recycling 1 ton of printing paper can save more than 2 tons of wood. With increasing recycling rates, lower quality paper fractions may be included. Thus the selection of a paper recycling technology is a crucial first design consideration. The paper recycling must be accompanied by appropriate technology to manage a huge volume of wastepaper. The specific objectives of this study were as follows: (1) comprehensive literature reviews of paper production and consumption, (2) figure out about paper recovery and utilization, (3) investigate the paper recycling in the sustainable times, (4) introduce eco-friendly recycling technology to paper industry.