• Title/Summary/Keyword: 폐합성수지

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Current Status of By-products Generation and Industrial Symbiosis Network in Pohang, South Korea (포항 산업단지 부산물 발생 및 산업공생 네트워크 현황)

  • Park, Jong-Hun;Jung, In-Gyung;Seo, Jae-Gun;Kim, Sang-Hyoun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.23 no.1
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    • pp.63-69
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    • 2015
  • This work aimed to analyze current status of by-products generation and industrial symbiosis network in Pohang steel industrial complex, South Korea. Pohang is the largest generating city of both total and the non-recycled industrial waste in Gyeongsangbuk-do, and most of the waste is generated from Pohang steel industrial park. Symbiosis map in Pohang steel industrial park shows that most of the current material symbiosis in the industrial park is for waste refractories and slag.

Pyrolytic Gasification Characteristics of Waste Tires and Waste Synthetic Resins (폐타이어 및 폐합성수지류의 건류가스화 특성)

  • 노남선;김광호;신대현;김동찬
    • Resources Recycling
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    • v.9 no.1
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    • pp.27-35
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    • 2000
  • Characteristics of pyrolytic gasification were examined for the waste tire and 7 types of waste synthetic resin, using a bench scale experimental facility. the product gas temperature of waste tires was $150~300^{\circ}C$ and the temperature profile in the combustion zone of the lower reactor part tended to be clearly distinguished from that in the gasification zone of the upper part. However, in the case of waste synthetic resins, there were no clear distinction and temperature fluctuation was severe, depending on the reaction time. Product gas quantity, which depends on that of supplied (1st) air, was found to be 105~135% of the 1st air amount at the steady state. The concentration of noncombustible components in product gas was 80~90 vol.% and the high heating value of the product gas calculated from gas compositions was 1,500~3,000 kcal/N㎥ for waste tire, and 300~2,900 kcal/N㎥ for waste synthetic resins, respectively. Heating value of product gas and combustible gas concentration were increased in proportion to 1st air amount when 1st air amount is below $0.35N\textrm{m}^3$/min.

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The physicochemical characteristics of manufactured RPF by industrial combustibility waste (사업장 가연성폐기물로 제조된 RPF의 물리화학적 특성)

  • Ryu, Young-Bok;Kim, Yang-Do;Kang, Min-Su;Lee, Gang-Woo;Shon, Byung-Hyun;Lee, Man-Sig
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.1
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    • pp.234-241
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    • 2010
  • Industrial combustible waste is very valuable source for refuse derived solid fuel since its heating value is usually over 3,000kcal/kg. Especially, synthetic high molecular compound which is high of productivity and heating value is used as raw material in many cases. Film type plastic has been widely used for producing RPF because their shaping is easy and they has high heating value. On the other hand, the possibility of various type of waste as a source for RPF in this study. It has been found that resin compound drived and tire derived solid fuel showed more than 6,000kcal/kg of heating value. But the heating value decreased by adding paper and wood waste.

Process Choice and Firm Performance in the Recycling Industry: An Empirical Investigation of Plastic Recycling Firms in Korea (재활용기업의 처리공정에 따른 경제성 분석: 폐합성수지 산업을 중심으로)

  • Lee, Younsuk;Lee, Namkyung;Shin, Hojung
    • Korean Management Science Review
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    • v.31 no.1
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    • pp.1-15
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    • 2014
  • As the scarcity of natural resources has become apparent, the recycling industry has emerged as a promising one for its growth potential. Yet, the recycling industry still remains undeveloped and inefficient for various reasons. In this study, we focus on firms' recycling processes to understand the current status of recycling firms' value creation activities. With respect to the adopted recycling processes, we empirically investigate the differences in firm characteristics and firm performance. We use the data from Keco (Korea Environment Cooperation) which annually conducts a survey of recycling firms in Korea. We exclusively consider the whole group of plastic recycling industry in order to control for a possible bias in firm performance, stemming from the heterogeneity in processing and recycling of materials other than plastics. We review the descriptive statistics from the sample firms and conduct a series of hierarchical regression analyses. The results show that most of the firms in this industry adopt physical transformation processes with a low-level technology. These firms with physical transformation processes are smaller in size and produce entry level items which do not secure higher margins. The results indicate that the recycling industry largely comprises low value added firms which lack economies of scale and resources for R&D. For the stable growth of the industry, recycling firms must create sustainable values through implementation of technology-driven processes and improvement in product quality. In addition, the government should help build a reliable reverse logistic network, lower the entry barriers, and provide necessary funding for the SMEs in the recycling industry.

A Review on R&D and Commercialization of Oil Recovery from Waste Plastics by Pyrolysis (폐합성수지(廢合成樹脂)류의 열분해(熱分解) 유화(油化) 기술(技術) 동향(動向))

  • Shin, Dae-Hyun;Nho, Nam-Sun;Kim, Sung-Soo;Kim, Kwang-Ho;Jeon, Sang-Gu
    • Resources Recycling
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    • v.19 no.1
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    • pp.3-12
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    • 2010
  • Recently, the waste energy utilization has become the main interest in energy industries, due to high oil prices, the low carbon, green growth policy and the RPS (Renewable Portfolio Standards) of our government. Therefore, energy guzzling companies such as district heating companies, textile industries are replacing energy to RDP/RPF. Especially, a lot of big companies are carrying out survey to commercialize the waste plastics pyrolysis technologies developed in Korea. In this paper, status of the pyrolysis technology of Korea were reviewed overall including basis of technology, waste plastics resources, research & development, and commercialization.

A Study on the Characteristics of Waste Fuel Manufactured from Industrial Combustible Waste Generated in Youngnam Area (영남권(嶺南圈) 산업단지(産業團地) 발생폐기물(發生廢棄物)을 이용한 고형연료(固形燃料) 제조 특성에 관한 연구)

  • Kang, Min-Su;Kim, Yang-Do;Ryu, Young-Bok;Lee, Gang-Woo;Lee, Man-Sig
    • Resources Recycling
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    • v.18 no.6
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    • pp.54-59
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    • 2009
  • The level manufacturing technique for refuse derived fuel (RDF) is possible to produce them itself by a domestic process which is appropriate in Korea. However, very few facilities were used for industrial combustible waste. The objective of this research is to develop the technique for refuse plastic fuel (RPF) of industrial waste. RPFs were prepared by mixing of plastic, paper and wood based on amount of regional waste. The physical properties of the RPFs prepared were investigated. RPFs prepared at mixing ratio(plastic : paper : wood) of 87.55% : 8.15% : 4.3% show the highest lower heating values in wet-base (LHVW) and the LHVW decreases as the mixing ratio of paper and wood increases.

고분자 폐기물의 건류가스화와 폐열회수

  • 김석준
    • Journal of the KSME
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    • v.31 no.9
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    • pp.812-819
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    • 1991
  • 고분자 폐기물을 처리하는 방법은 크게 재이용, 소각, 매립 등으로 나눌 수 있으나 재이용이나 매립 방법은 폐기물의 급속한 증가를 감당하기에 한계가 있다. 소각은 폐기물의 감량화와 폐열 회수의 이중 효과를 얻을 수 있는 가장 일반적이고 손쉬운 방법이긴 하지만 폐고무나 폐합성 수지와 같은 고분자폐기물을 직접 소각할 때에는 많은 유해가스, 분진과 매연이 발생하는 어려 움이 따른다. 건류소각 방식은 이러한 직접 소각의 단점을 보완해 주는 것으로 최근 각광을 받고 있으나 안전성, 유지관리 및 시설비 등의 면에서 뿐만 아니라 기술적인 면에서도 아직 많은 연 구가 요구되고 있다. 열분해 또는 건류 가스화에 관한 연구는 석탄에 대하여 활발하게 이루어져 왔으며 1960년대에는 심각한 환경오염을 겪으면서 폐기물 처리에 대한 응용이 시작되었다. 1970년대부터 미국에서는 EPA(environmental protection agency)의 주도로 도시쓰레기에서 가스, 기름 등을 회수하는 기술개발을 강력히 추진하였으며 일본에서도 통상산업성 산하 공업기술원의 도시쓰레기 열분해 처리 기술 개발을 시작으로 2차공해 감소를 선결 과제로 한 여러 가지 프로 세스를 개발해 왔다. 국내에서는 최근에들어 연구가 비교적 활발하게 이루어 지고 있다. 특히 동력자원부 주관의 대체에너지 사업의 일환으로 추진중인 폐기물의 에너지화 이용에 관한 연구 중에서도 열분해나 건류 가스화에 관련된 연구가 많은 비중을 차지하고 있다.

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Improvement of Working Surroundings in the Industrial Waste Incinerator (산업폐기물 소각플랜트의 작업환경개선)

  • Shon Byung-Hyun;Lee Gang-Woo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.3
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    • pp.431-439
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    • 2006
  • A lot of particulate matter and an offensive odor are emitted during the operations of an industrial waste incinerator (IWI), especially pre_treatment and waste input processes. These pollutants affect the labor efficiency of an operator. Therefore, in this study. we have studied the improvement of working surroundings in the industrial waste incinerator by designing a new control system. A computational fluid dynamics has been used to find the diffusion flows of air pollutants (mainly particles and odor) to the working surroundings of the waste treatment complexes. The results obtained from the simulation analysis applied to the basic design on the points (and/or site) and types of pollution control devices. When pollutant control devices are constructed, the concentration of each pollutant at site 1 and 2 decreased about 83-97% for toluene, 48-72% for styrene, 75-87% for xylene, and 23-36% for ammonia, respectively. In addition, the PM-10 and TSP were decreased about 87% and 86% at site 3 (lower part of the waste input), 87% and 85% at site 4 (side part of the waste input), respectively. These indicated that the new control system had an excellent performance of particulate matter and odor removal and it could be applied to other waste treatment plant in place of an industrial waste incinerator.

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A Study on the Promotion of Combustible Construction Waste Recycling (가연성 건설폐기물의 자원화 제고를 위한 방안)

  • Park, Ji-Sun;Lee, Sea-Hyun
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.4 no.1
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    • pp.89-95
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    • 2009
  • The current enforce decree of "The Act on the Promotion of Construction Waste Recycling" divides seventeen kinds of construction wastes by property and configuration. Mixed construction waste, one of them classified by the enforce decree, is composed two more than justified construction wastes except refuse soil and rock. In construction wastes justified by enforce decree of this law, most refuse concrete and asphalt concrete of construction wastes are recycled. As well as refuse metal is separated, sorted from bulk them, and merchandised for value. Finally this is used the secondary manufactured products. Even though combustible construction wastes like refuse wood, plastics, fiber can be recycled RDF(Refuse derived fuel) or RPF(Refuse plastic fuel) because of high caloric value and low heavy metal but most of them are discharged as mixed construction waste and then treated by treated by incineration and landfill. Therefore, to control construction waste flow efficiently, construction wastes are classifies first combustible, incombustible, mixed combustible, incombustible and etc. in this study. The combustible waste is consisted refuse wood, plastics, fiber and etc. and incombustible waste contains refuse concrete, asphalt, and etc. Mixed construction is construction waste that can not separate from mixed waste bulk with different kinds.

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Economic Analysis and CO2 Emissions Analysis by Circulating the Industrial Waste Resource between Companies (국내 기업들의 폐기물자원 순환에 따른 탄소배출량 및 경제성 분석)

  • Kim, Young-Woon;Kim, Jun-Beum;Hwang, Yong-Woo;Park, Ji-Hyoung
    • Clean Technology
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    • v.18 no.1
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    • pp.111-119
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    • 2012
  • These days many companies are trying to reduce, recycle and reuse their wastes. Even though many wastes can be recycled, those are incinerated or landfilled. To solve these problems, there are many projects to make efforts to recycle wastes in especially the industrial complexes. But, due to the absence of information about waste recycling, recyclable wastes are still incinerated or landfilled. Based on these research background, this study aims to suggest the evaluation methodology of the $CO_2$ emissions and cost reduced by circulating the industrial waste to resource. We evaluated the environmental and economic effect between companies which emit the plastic waste and organic solvent waste and use them as raw-materials in the off-line recycling information exchange network. The environmental and economic aspects were analyzed comparing waste recycling with waste incineration. By recycling the plastic waste as raw-materials, $CO_2$ emission were reduced 1,070 ton in 2009 and 1,234 ton in 2010 and 657.4 million won in 2009 and 755.0 million won in 2010 were reduced. In recycling the organic solvent waste, 7.3 ton-$CO_2$ in 2010 and 5.6 ton-$CO_2$ in 2011 were reduced and 15.9 million won in 2010 and 12.2 million won in 2011 were reduced.