• Title/Summary/Keyword: 폐기물 고형 연료

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Environmental Assessment and Characteristic of Refuse Derived Fuel by Mixed Biomass with Binder (바이오매스에 바인더 첨가에 따른 폐기물 고형연료 특성 및 환경성평가)

  • Lee, Hyung-Don;Cho, Joon-Hyung;Kim, In-Deuk;Kim, Yun-Soo;Oh, Kwang-Joong
    • Clean Technology
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    • v.17 no.4
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    • pp.336-345
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    • 2011
  • The total area of forest land in Korea is 64.2%, and significant forest resources can continuously be produced. However our country didn't separate the recyclable waste wood and was illegal landfill or incinerated. In this study, waste-wood and rice husk of biomass and low-grade-anthracite made refuse derived fuel by mixing and compressing. In addition, the binding effect of binders and additives were analyzed. Physical and chemical characteristics of manufactured refuse derived fuel were analyzed and evaluated suitability by compared with quality standards. A result of change with compressed and relaxed density, added 20% anthracite and 10% rice husk is optimal density change and average density increased large range when 20 wt.% P.V.A., guargum, molasses and 10 wt.% starch were added. All fuel samples be distributed over 3,500 kcal/kg LHV and grade of No. 3~4 fuels appeared. A result of the characteristics of physical and chemical compressed biomass refuse derived fuel with addictive, 12.9% of durability improvement appeared when is mixing asphalt and 5.8% of durability improvement appeared when is mixing rice bran by pretreatment of NaOH 5%.

Development of Separation System with Rotating Rakes for Recovery of Film-based Plastics (기계식(機械式) 회전(回轉)레이크를 이용(利用)한 생활계(生活界) 폐기물(廢棄物) 필름류(類) 선별장치(選別裝置) 개발(開發)에 관(關)한 연구(硏究))

  • Lee, Byung-Sun;Na, Kyung-Duk;Han, Sang-Kuk;Choi, Woo-Zin;Park, Eun-Kyu
    • Resources Recycling
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    • v.19 no.3
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    • pp.24-32
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    • 2010
  • In the present work, a new separation system with rotating rakes has been developed to separate the film-based plastics from the recyclable materials, and environment assessment is also carried out during operation of the device. Capacity of the device was about 5.3 ton/hr at a rakes rotation speed of 26.0 rpm (the number of rakes in the 1st, 2nd and 3rd trials were 39, 52 and 48, respectively) and a belt conveyor speed of 38.5m/min, which satisfied the initial design capacity (5.0 ton/hr). Recovery ratio and purity of the plastic films were 92.6% and 96.5%, respectively at a rotation speed of 28 rpm. The levels of noise, vibration and particulate emission were below material standard regulatory limits. Plastic refused fuel (RPF) was also prepared with the recovered films. The calorific value and chlorine content of the prepared RPF were 9,740 kcal/kg and 0.18%, respectively which satisfy the first grade quality specification of the Korean RPF standard. As a result of this work, recovery of energy resources from the municipal solid waste is possible by adopting the developed separation device.

Feasibility Study on Use of Livestock Manure as Solid Refuse Fuel by Torrefaction Method (반탄화 기술을 이용한 가축분뇨의 고형연료화 가능성 연구)

  • Lee, Yongho;Sanjusren, Oyun-Erdene;Pak, Daewon
    • Journal of the Korean Applied Science and Technology
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    • v.36 no.2
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    • pp.560-571
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    • 2019
  • In the study, used torrefaction method to make sample from organic waste of livestock manure for Biomass-solid refuse fuel feasibility study of torrefied materials. Fallen leaves and sawdust added in torrefaction methods with livestock manure, that additives were used to improve the lower calorific value of livestock manure. During the torrefaction experiment, the reaction temperature was varied from $200^{\circ}C$ to $260^{\circ}C$ and $20^{\circ}C$ to prepare a sample. The reaction time was divided into 15, 30 and 45min to determine the effect of the experimental conditions on the torrified products. The additives were mixed at a ratio of 9:1 and 8:2 (Cow manure: additive) relative to the livestock manure. Through this experiment, it was obtained 3,500 kcal/kg standard product of solid fuel produced in Korea and improved product was obtained by adding additives.

Development of Composite RPF by mixing the sludge with plastic waste (슬러지와 플라스틱 폐기물을 혼합한 복합고형연료 개발)

  • Lee, Jangkun;Kim, Minsun;Roh, Seungmin
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.206.2-206.2
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    • 2010
  • 현재 RPF 생산공정에서 생산된 RPF는 약 7,500~8,500kcal/kg 의 높은 열량을 지니고 있다. 이러한 특성으로 연소시 소각로 내부의 온도가 부분적으로 급격히 상승하여 적정온도조절이 어렵고, 로내 장치들의 내구성이 저하되는 등 문제가 발생하고 있다. 또한, RPF에 포함된 비교적 높은 농도의 염소 함량(0.8~1.8% wt)으로 인해 다량의 대기오염물질이 발생되는 단점이 나타나고 있다. 따라서, 이러한 문제점들을 개선하기 위해 RPF의 개질이 필요하며 본 연구에서는 슬러지와 RPF를 혼합하여 열량, 성형성, 염소함량등을 고려하여 최적의 혼합비율을 선정하였다. J하수처리장에서 발생하는 하수슬러지를 이용하여 5, 15, 25, 30, 35%를 RPF 성형공정에 혼합하여 실험하였다. 5% 혼합시 발열량은 약 6,300~6,800kcal/kg, 염소농도는 0.8~1.6%(wt), 15% 혼합시 발열량은 5,500~6,000kcal/kg, 염소농도는 0.7~1.4%(wt), 25% 혼합시 발열량은 5,200~5,900kcal/kg, 염소농도는 0.6~1.1%(wt), 30% 혼합시 발열량은 5,000~5,700kcal/kg, 염소농도는 0.6~1.0%(wt), 35% 혼합시 발열량은 4,800~5,200kcal/kg, 염소농도는 0.4~0.6%(wt)으로 나타났다. 각 혼합비율에서 관찰된 성형성은 5~25% 혼합까지는 성형된 RPF와 유사하게 일정한 크기 및 강도를 유지 할 수 있었으나, 25% 이상 혼합시 분말형태의 가루가 많이 발생되며 강도가 약해져 쉽게 부스러지는 문제점등이 나타났다. 연료의 개질 형태나 성형성등을 고려하였을 때 슬러지 혼합비율이 약 15~25% 정도가 최적 혼합비율인 것으로 나타났다.

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Effect of Waste Energy Recovery on SUDOKWON Landfill Gas Generation (폐기물 에너지화가 수도권매립지 매립가스 발생량에 미치는 영향)

  • Chun, Seung-Kyu
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.10
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    • pp.942-948
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    • 2010
  • To predict the potential reduction of $CH_4$ by recovering several types of wastes as of reusable energy sources like RDF, the $CH_4$ emission for each type of waste from Landfill Site 3 of SUDOKWON Landfill was estimated for the period of 2017 to 2024. Without any recovering effort on types of wastes being disposed of at the Landfill, there are producing a total of $526{\times}10^6\;Nm^3$ of $CH_4$; municipal waste of $337{\times}10^6\;Nm^3$, construction waste of $178{\times}10^6\;Nm^3$, and facility waste of $11{\times}10^6\;Nm^3$. It composed of 41.5% to that observed from 2002 to 2009. With properly retrieved by MT(Mechanical Treatment), it released a total of $158{\times}10^6\;Nm^3$ $CH_4$; $127{\times}10^6\;Nm^3$, $28{\times}10^6\;Nm^3$, and $4{\times}10^6\;Nm^3$, respectively. Additionally, when biologically degradable residues can be fully treated by MBT (Mechanical & Biological Treatment) system, the total amount of $CH_4$ emitted from the site will be lowered down as low as $115{\times}10^6\;Nm^3$, which is comparably lower showing only 21.8% to that for without any energy recovery practice. Futhermore, it is far less showing 9.1% to that obtained from 2002 to 2009. It can be decided that predictable amount of $CH_4$ emission reduced could be successfully accomplished and enhanced through ways of energy recovery efforts such as further scale adjustment of LFG treatment capacity in association with currently implemented practices in the landfill site.

Numerical Study on the Combustion and Exhausted Gases for Operating Conditions in a Fast Pyrolysis Power Boiler (폐기물 고열분해 동력 보일러의 운전 조건에 따른 연소 및 배출가스 특성에 관한 수치적 연구)

  • Lim, Ho;Hwang, Min-Young;Kim, Gyu-Bo;Park, Seong-Ryong;Jeon, Chung-Hwan
    • Clean Technology
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    • v.20 no.1
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    • pp.80-87
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    • 2014
  • Numerical study was investigated to obtain the database for developing a fast pyrolysis power boiler by waste fuel. The studies with various conditions were performed using ANSYS FLUENT. Also, the fuel properties was experimentally analyzed to utilize the input parameters for numerical analysis, that were proximate and ultimate analysis, reaction kinetics included pyrolysis and combustion. The results showed that temperature, combustion and exhausted gases was changed with heating value of fuel and feeding rate. Finally, the stable operating condition by analyzing results was proposed.

타이타니아계 촉매 환원반응에 의한 아황산가스의 제거

  • 권재범;정종국;우희철;이내우
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 2000.06a
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    • pp.164-168
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    • 2000
  • 화석연료의 사용증가로 인해 배출되는 산성가스인 $SO_2$, NOx 는 보건위생상 독성물질로서, 산성비의 주요 성분으로 규제의 대상이며, 이를 감소시키기 위한 노력이 활발히 진행되어 왔다. 배연가스중의 $SO_2$ 처리 공정의 대표적 예는 석회석 슬러리를 이용한 습식 탈황으로 여러 나라에서 사용되고 있으나, 폐수발생과 넓은 설치면적, 고형 폐기물의 발생 등으로 인하여 보다 개선된 공정의 개발이 요구되고 있다. 이에 유망한 기술로 제시되고 있는 것이 재생탈황공정이다. (중략)

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Proposal of a Pilot Plant (2T/day) for Solid Fuel Conversion of Cambodian Mango Waste Using Hybrid Hydrothermal Carbonization Technology (하이브리드 수열탄화기술을 이용한 캄보디아 망고 폐기물 고형연료화 실증플랜트 (2T/day) 제안)

  • Han, Jong-il;Lee, Kangsoo;Kang, Inkook
    • Journal of Appropriate Technology
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    • v.7 no.1
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    • pp.59-71
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    • 2021
  • Hybrid hydrothermal carbonization (Hybrid HTC) technology is a proprietary thermochemical process for two or more organic wastes.The reaction time is less than two hours with temperature range 180~250℃ and pressure range 20~40bar. Thanks to accumulation of the carbon of the waste during Hybrid HTC process, the energy value of the solid fuel increases significantly with comparatively low energy consumption. It has also a great volume reduction with odor removal effect so that it is evaluated as the best solid fuel conversion technology for various organic wastes. In this study of the hybrid hydrothermal carbonization, the effect on the calorific value and yield of Cambodian mango waste were evaluated according to changes in temperature and reaction time. Through the study, parameter optimization has been sought with improving energy efficiency of the whole plant. It is decomposed in the Hydro-Carbonation Technology to Generate Gas. At this time, it is possible to develop manufacturing and production technologies such as hydrogen (H2) and methane (CH4). Based on the results of the study, a pilot plant (2t/day) has been proposed for future commercialization purpose along cost analysis, mass balance and energy balance calculations.

A Study on Combustion Characteristics due to Changes in Solid Refuse Fuel Properties (고형연료제품 성상 변화에 따른 연소특성에 관한 연구)

  • Lim, Jong-Wan;Dong, Jong-In;Yoon, Kyoon-Duck;Shim, Jae-Young
    • Applied Chemistry for Engineering
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    • v.26 no.6
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    • pp.686-691
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    • 2015
  • A basic research for utilizing solid refuse fuel (SRF) based on changing SRF properties (RDF, RPF) and types (pellet, fluff) is demonstrated. Physicochemical characteristics of SRF and also changes in thermal decomposition depending on combustion time and emission gas (NOx, CO, HCl, etc) concentration were investigated for applications to waste energy sources. In conclusion, RPF is easy to pelletize, and has better combustion efficiency, higher LHV, higher thermal reduction, and short combustion time because it is composed of plastic wastes homogeneously. Also, fluff type samples have better combustion efficiency, and short combustion time because it has wider exposed surface area for combustion. It can also save energy consumption for pelletizing.