• Title/Summary/Keyword: 생분해성폐기물

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Analyses of Settlement Characteristics Evaluating the Applicability of Bioreactor Landfills on MSW Landfills (바이오리액터 매립공법의 폐기물 매립지에 적용가능성 평가를 위한 침하특성 분석)

  • Jo, Young-Seok;Jang, Yeon-Soo
    • Journal of the Korean Geotechnical Society
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    • v.36 no.5
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    • pp.17-24
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    • 2020
  • In order to analyze the effect of applying the bioreactor landfills on the waste landfill for acceleration of waste biocompression, a settlement experiment was performed. The secondary compression indices (Cα) were analyzed, and compared with the results of experimental studies conducted in other countries. Analyses of Cα from the experiment showed that the recirculation method of mixing leachate and FWL could accelerate the waste settlement as much as 2.9 times and 2 times more than the leachate recirculation and the sanitary landfills due to additional biocompression generated by the organic matter in FWL. The Cα in this study was smaller than the Cα of the other studies due to the low organic content of the waste in accordance with domestic waste policies to reduce food waste. The relation between biodegradable waste content and Cα was analyzed. The Cα of the waste was shown to be sensitive to biodegradable waste content, and become higher as the content of the biodegradable waste increases.

Trend on Materials Technologies for Environmetally-friendly Biodegradable Electronics (친환경 생분해성 일렉트로닉스 소재기술 동향)

  • Kim, Joong-Kwon;Shin, Gunchul;Jin, Jungho
    • Prospectives of Industrial Chemistry
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    • v.22 no.2
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    • pp.13-24
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    • 2019
  • 최근 짧아진 전자 기기의 수명에 따른 전자 폐기물이 환경에 미치는 부정적인 영향이 세계적인 문제점으로 주목받고 있다. 이와 같은 문제를 해결하기 위하여 전자 제품에 사용되는 생분해성, 안정성 및 무독성이 입증된 유기 재료 개발에 대한 다양한 방법이 검토되고 있으며 이러한 유기 재료의 특징들은 생체 전자 기기에도 유용할 수 있다. 따라서 본 기고문에서는 전자 폐기물로부터 야기되는 여러 문제를 해결하기 위해 생분해성, 안정성 및 무독성의 특성을 갖는 친환경 전자 기기 소재기술 개발 동향에 대해 알아보고자 한다.

Degradation of Organic Component in MSW by Super-heated Steam (과열(過熱) 증기(蒸氣)를 이용한 국내 폐기물(廢棄物) 유기성(有機性) 성분의 분해(分解) 특성 연구)

  • Kim, Woo-Hyun;Roh, Seon-Ah;Min, Tai-Jin;Sung, Hyun-Je;Park, Seong-Bum;Jang, Ha-Na
    • Resources Recycling
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    • v.18 no.6
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    • pp.10-17
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    • 2009
  • Degradation of the organic component in the waste were carried out by superheated steam in a pressurized vessel. The effects of waste characteristics, reaction temperature and residence time on the degradation rate have been determined. The biodegradable organic components such as food and paper waste have been degraded, and plastics, wood and metal were remained without degradation. The degradation efficiency is decided by the desizing rate of the waste, and the waste mixture with 23% biodegradable organic component shows higher desizing rate than that of the 43% of the biodegradable organic component in a short residence time and the desizing rate is found to be 90% in the maximum condition.

Effect of Biodegradable Waste Particle Size on Aerobic Stabilization Reactions in MBT System (생분해성 폐기물 입경이 MBT시스템과 연계된 호기성안정화반응에 미치는 영향)

  • Kwon, Sang-Hagk;Ban, Jong-Sub;Kim, Su-Jin;Phae, Chae-Gun
    • Journal of Korean Society of Environmental Engineers
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    • v.33 no.7
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    • pp.523-529
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    • 2011
  • This study has been performed to examine the influence of the size of particles on the stabilization in the aerobic stabilization equipment connected with MBT system. The biodegradable waste inside the reactor (60% of food waste, 25% of paper waste, 2% of wood waste and 5% of compost) has been charged in same composition. The degree of stabilization was compared and analyzed after charging with adjustment of particle size in 5 mm, 10 mm, 20 mm, 50 mm, 100 mm and state of no separation. The experiment revealed that highest temperature beyond $65^{\circ}C$ was shown in the particle size of less than 50 mm in change of temperature and the highest temperature was about $50^{\circ}C$ in reactor of 100 mm and no separation. The proportionality between generated quantity of $CO_2$ and particle size was not observed, even the highest in generated quantity was shown in over 100 mm. The weight changes based on wet and dry conditions in the reaction process showed the 30% and 46% of reduction in the smallest particle size of 5 mm and it showed the trend of the lower reduction rate at the bigger particle size. The water soluble $COD_{Cr}$ and TOC showed the reduction rate of 60% in reactor of particle size in 100 mm and no separation while the reduction rate comparing to the initial stage of reaction in the reactor of less than 50 mm was 80%. Such result derived the conclusion of acceleration in the decomposing stabilization of biodegradable material due to the decomposing rate of organic substance as the particle size of biodegradable waste gets smaller. It is concluded as necessary to react in adjustment under 50 mm of particle size as much as possible.

Biogas Production and Utilization Technologies from Organic Waste (유기성폐기물을 이용한 바이오가스 생산 및 활용기술)

  • Heo, Nam-Hyo;Lee, Seung-Heon;Kim, Byeong-Ki
    • New & Renewable Energy
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    • v.4 no.2
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    • pp.21-30
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    • 2008
  • Anaerobic digestion (AD) is the most promising method of treating and recycling of different organic wastes, such as OFMSW, household wastes, animal manure, agro-industrial wastes, industrial organic wastes and sewage sludge. During AD, i.e. degradation in the absence of oxygen, organic material is decomposed by anaerobes forming degestates such as an excellent fertilizer and biogas, a mixture of carbon dioxide and methane. AD has been one of the leading technologies that can make a large contribution to producing renewable energy and to reducing $CO_2$ and other GHG emission, it is becoming a key method for both waste treatment and recovery of a renewable fuel and other valuable co-products. A classification of the basic AD technologies for the production of biogas can be made according to the dry matter of biowaste and digestion temperature, which divide the AD process in wet and dry, mesophilic and thermophilic. The biogas produced from AD plant can be utilized as an alternative energy source, for lighting and cooking in case of small-scale, for CHP and vehicle fuel or fuel in industrials in case of large-scale. This paper provides an overview of the status of biogas production and utilization technologies.

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Biogas Production and Utilization Technologies from Organic waste (유기성폐기물을 이용한 바이오가스 생산 및 활용기술)

  • Heo, Nam-Hyo;Lee, Seung-Heon;Kim, Byeong-Ki
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.05a
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    • pp.202-205
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    • 2008
  • Anaerobic digestion(AD) is the most promising method of treating and recycling of different organic wastes, such as OFMSW, household wastes, animal manure, agro-industrial wastes, industrial organic wastes and sewage sludge. During AD, i.e. degradation in the absence of oxygen, organic material is decomposed by anaerobes forming degestates such as an excellent fertilizer and biogas, a mixture of carbon dioxide and methane. AD has been one of the leading technologies that can make a large contribution to producing renewable energy and to reducing $CO_2$ and other GHG emission, it is becoming a key method for both waste treatment and recovery of a renewable fuel and other valuable co-products. A classification of the basic AD technologies for the production of biogas can be made according to the dry matter of biowaste and digestion temperature, which divide the AD process in wet and dry, mesophilic and thermophilic. The biogas produced from AD plant can be utilized as an alternative energy source, for lighting and cooking in case of small-scale, for CHP and vehicle fuel or fuel in industrials in case of large-scale. This paper provides an overview of the status of biogas production and utilization technologies.

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Interfacial Adhesion of Silk/PLA Composite by Plasma Surface Treatment (플라즈마 표면처리에 의한 Silk/PLA 복합재료의 계면접착)

  • 추보영;한철희;권미연;이승구;박원호;조동환
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.10b
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    • pp.189-190
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    • 2003
  • 섬유강화 복합재료의 사용이 점점 증가함에 따라 구조용 및 내장재 등으로 사용된 수명이 다한 섬유강화 복합재료의 사용후 폐기가 문제가 되고 있다. 특히, 자동차 부품, 건축자재 및 전기절연재 등으로 가장 많이 사용되는 유리섬유 복합재료의 폐기물이 급격히 증가하여 환경 오염문제가 심각해지고 있어서, 환경 친화적인 새로운 복합재료에 대한 필요성이 제기되어 왔다. 따라서 본 연구에서는 천연섬유를 이용한 천연섬유/생분해성 수지계 복합소재를 대상으로 환경적합성이 우수하고 자연환경에서 완전한 생분해성을 가지며, 유리 섬유복합재료를 대체할 물성이 우수한 새로운 Biocomposite를 개발하고자 하였다. (중략)

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High functional biodegradable card through annealing (어닐링을 통한 고기능성 생분해성 카드)

  • Sim, Jae-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.2
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    • pp.280-286
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    • 2020
  • Cards made from PVC and PET materials do not oxidize or decompose readily, so they are generally incinerated or landfilled after use and cause pollution problems, such as environmental hormones and combustion gases during incineration. In addition, there is a problem of environmental pollution because they are discarded as semi-permanent refuse without being decomposed at landfill. This study attempted to solve this problem using polylactic acid (PLA), which is a representative biodegradable material as a substitute material that can solve the issues with these cards. On the other hand, when the thin card core sheet is made from only PLA material, the physical properties of the material are insufficient, such as the low temperature impact strength, high temperature stability, and poor bending properties, so its use is limited. To solve this problem, the compositional ratio of PLA was reviewed, and the optimal biodegradable compound composition was determined through an examination of the compositions, such as crystallization nucleating agents, additives, and nano compound technology. The high functionalization as a biodegradable card was verified through a laminating process using annealing technology.

Evaluation of Resource Recovery from Sorted Waste by MBT System (MBT시스템에 의해 선별(選別)된 생활폐기물(生活廢棄物)의 자원화(資源化) 평가(評價)에 관(關)한 연구(硏究))

  • Lee, Byung-Sun;Han, Sang-Kuk;Lee, Nam-Hoon;Kang, Jeong-Hee;Wie, June
    • Resources Recycling
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    • v.22 no.5
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    • pp.20-28
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    • 2013
  • This study was carried out to evaluate the possibility of resource recovery for municipal solid waste(MSW) that sorted by a MBT system. First, physical property of MSW was similar to wastes carried into Sudokown landfill site. However, moisture of MSW was little higher than that. As a result of BMP test using organic fraction of MSW(OFMSWs), approximately 60 ~ 80 mL $CH_4/g$-VS of methane was occurred. Compared to the other studies, the value of methane is lower. It seems to be caused that high ratio of vinyl/plastic in OFMSWs. The other BMP test using sample of MBT system located in Sudokwon landfill was conducted each physical properties. According to the result of experiment, food waste makes 193 mL $CH_4/g$-VS, and paper is 102 mL $CH_4/g$-VS. However, there was not methane production in vinyl and rubber. Additionally, others that can't sort no more show 30 m $CH_4L/g$-VS of methane production. From the result of experimental data OFMSWs has high fraction of vinyl, rubber and other substance that difficult for biodegradation. Therefore it is need to sort of them.

Fabrication and Characterization of Triboelectric Nanogenerator based on Porous Animal-collagen (다공성 동물성-콜라겐을 이용한 마찰전기 나노발전기 제작 및 특성평가)

  • Shenawar Ali Khan;Sheik Abdur Rahman;Woo Young Kim
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.1
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    • pp.179-187
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    • 2023
  • Nanogenerators containing biomaterials are eco-friendly electronic devices in terms of being a non-polluting energy source and biodegradable electronic waste. In particular, the amount of waste will be also reduced if the biomaterial can be extracted from biowaste. In this study, a triboelectric nanogenerator was fabricated using animal collagen present in the skin of a mammal and its characteristion was proformed. The electro-anodic layer of the triboelectric nanogenerator was constructed by forming a collagen film using the spin coating method, and it was confirmed that the film was porous from scanning electron microscopy. The fabricated triboelectric nanogenerator exhibited an open-circuit voltage from 7 V at 3 Hz to 15 V at 5 Hz due to periodic mechanical movement, and a short-circuit current of 3.8 uA at 5 Hz. In conclusion, collagen-containing triboelectric nanogenerators can be power source for low-power operating devices such as sensors and are also expected to be useful for reducing electronic waste.