• 제목/요약/키워드: Gasification of wastes

검색결과 47건 처리시간 0.026초

연료용 합성가스 생산을 위한 바이오매스와 폐플라스틱의 혼합가스화 (Co-Gasification of Woodchip and Plastic Waste for Producing Fuel Gas)

  • 홍성구
    • 한국농공학회논문집
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    • 제54권3호
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    • pp.75-80
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    • 2012
  • Gasification is a therm-chemical conversion process to convert various solid fuels into gaseous fuels under limited supply of oxygen in high temperature environment. Considering current availability of biomass resources in this country, the gasification is more attractive than any other technologies in that the process can accept various combustible solid fuels including plastic wastes. Mixed fuels of biomass and polyethylene pellets were used in gasification experiments in this study in order to assess their potential for synthesis gas production. The results showed that higher reaction temperatures were observed in mixed fuel compared to woodchip experiments. In addition, carbon monoxide, hydrogen, and methane concentrations were increased in the synthesis gas. Heating values of the synthesis gas were also higher than those from woodchip gasification. There are hundred thousand tons of agricultural plastic wastes generated in Korea every year. Co-gasification of biomass and agricultural plastic waste would provide affordable gaseous fuels in rural society.

PGV(Plasma Gasification & Vitrification) 시스템을 통한 폐기물의 자원화 기술 (A Study on Recycling Technology of Wastes by Using PGV(Plasma Gasification & Vitrification) System)

  • 유대우;김영석
    • 플랜트 저널
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    • 제4권4호
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    • pp.62-70
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    • 2008
  • PGV(Plasma Gasification & Vitrification) system has been developed based on a pyrolysis melting gasification technology that provides the possibilities of acquiring renewable energy. As volume of wastes increases with the rapid industrialization and population growth, eco friendly disposal is drawing more social attention. Pyrolysis plasma technology is regarded as the best environmentally friendly process for the waste disposal among numerous waste disposal processes. Introduced in this paper is the behavior of the plasma torch and a computational fluid simulation dynamics is discussed for designing the melting furnace. Some PGV applications have also been discussed.

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합성고분자류 폐기물의 화염열분해 가스화에 의한 발생가스의 연소특성 및 가스엔진시스템에의 적용연구 (Combustion Characteristics of Synthetic Gas from Flame Pyrolysis Gasification of Polymetric Wastes and their Applicability to Gas Engine System)

  • 김태권;장준영;심성훈;김정배;김병하
    • 한국수소및신에너지학회논문집
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    • 제10권4호
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    • pp.233-243
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    • 1999
  • Combustion characteristics of synthetic gas from flame pyrolysis gasification of polymetric wastes are reported and the applicability of synthetic gas from flame pyrolysis gasification to a gas engine system is presented. Engine power is easily predicted by the volume percentage of the synthetic gas. Measurements have been made to obtain the range of flame existence in the function of volume percentage of CO and $H_2$ gases in the synthetic gas. In order to clarify the emission of the flames, NOx measurements by chemiluminescent analyser are taken in flames with different equivalent ratios. From the results of the engine performance data we also have demonstrated that the output of the gas engine modified from a LPG engine is about 5 ps at normal rating. We conclude that synthetic gas from flame pyrolysis gasification of polymetric wastes is applicable to a gas engine system.

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GASIFICATION OF CARBONEOUS WASTES USING THE HIGH TEMPERATURE REFORMER

  • Lee, Dong-Jin
    • Environmental Engineering Research
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    • 제10권3호
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    • pp.122-130
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    • 2005
  • Gasification of carbonaceous wastes such as shredded tire, waste lubricating oil, plastics, and powdered coal initiates a single-stage reforming reactor(reformer) Without catalyst and a syngas burner. Syngas is combusted with $O_2$ gas in the syngas burner to produce $H_2O\;{and}\;CO_2$ gas with exothermic heat. Reaction products are introduced into the reforming reactor, reaction heat from syngas burner elevates the temperature of reactor above $1,200^{\circ}C$, and hydrogen gas fraction reaches 65% of the product gas output. Reactants and heat necessary for the reaction are provided through the syngas burner only. Neither $O_2$ gas nor steam is injected into the reforming reactor. Multiple syngas burners may be connected to the reforming reactor in order to increase the syngas output, and the product syngas is recycled into syngas burner.

석탄 및 폐기물로부터 합성가스 제조를 위한 가스화용융 Pilot Plant 운전특성 (Operation Characteristics of Gasification/Melting Pilot Plants for Synthesis Gas Production using Coal and Waste)

  • 정석우;윤용승;유영돈
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.561-564
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    • 2005
  • Gasification has been regarded as a very important technology to decrease environmental pollution and to obtain higher efficiency. The gasification process converts carbon containing feedstock into a synthesis gas, composed primarily of CO and $H_2$. And the synthesis gas can be used as a source for power generation or chemical material production. Through more than nine years, IAE developed and upgraded several gasification/melting pilot plant system, and obtained a good quality synthesis gas. This paper illustrates the gasification characteristics and operation results of two 3 ton/day synthesis gas production facilities. One is entrained-bed slagging type coal gasifier system which is normally operated in the temperature range of $1,400\~1,450^{\circ}C,\;8\~10$ bar pressure. And the other is fixed-bed type gasification/melting furnace system using MSW and industrial wastes as a feedstock.

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가축분뇨 병합처리 바이오가스화를 위한 설계 및 운전 기술지침 마련 연구(III) 설계 및 운전 지침(안) 중심으로 (A Study on Establishment of Technical Guideline of the Installation and Operation for the Efficient Bio-gasification Facility of Pig Manure and Food Waste(III): Design and Operation Guideline)

  • 이동진;문희성;손지환;배지수
    • 유기물자원화
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    • 제25권3호
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    • pp.99-111
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    • 2017
  • 본 연구는 유기성폐자원 (가축분뇨, 음식물류폐기물, 음식물류폐수 등)을 병합 소화하는 시설을 대상으로 적정 설계 기준치를 충족하기 위한 설계 및 운전 기술지침서 마련하고자 현장조사와 정밀모니터링을 실시하였다. 현장조사시 도출된 결과를 바탕으로 설계 및 운전 사항, 모니터링 항목 및 주기, 시운전 기간 등 바이오가스화 시설의 전반적인 가이드라인을 제시하였다. 초기 혐기소화 처리용량 설계시 유입 원료별 배출 특성을 고려하여 처리용량의 10~30 %의 여유율을 적용하였다. 공정별 설계 지침의 경우, 반입 및 전처리 설비의 유기물 반입 농도를 TS 10 % 이하로 제한하고 혐기소화조 운전시 저해요인 제한 농도을 제시하였다. 또한 병합기준 유기물부하율 $1.5{\sim}4.0kgVS_{in}/(m^3{\cdot}day)$, 소화가스 이용설비는 탈황 및 제습 방법, 호기액비화조의 적정 설계 운영인자 등을 제안하였다. 바이오가스화 시설의 운전인자는 pH (산발효조 4.5~6.5, 메탄발효조 6.0~8.0), 온도변화폭 $2^{\circ}C$ 이내, 휘발성지방산과 암모니아를 각각 3,000 mg/L 이하로 유지할 것을 권장하였다.

석유 코크스의 에너지 전환 : CO2 가스화 (Energy conversion of petroleum coke : CO2 gasification)

  • 국진우;곽인섭;이시훈
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.255-257
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    • 2014
  • The installation of light oil facilities or delayed cokers seems to be inevitable in the oil refinery industry due to the heavy crude oil reserves and the increased use of light fuels as petroleum products. Petroleum coke is a byproduct of oil refineries and it has higher fixed carbon content, higher calorific value, and lower ash content than coal. However, its sulfur content and heavy metal content are higher than coal. In spite of disadvantages, petroleum coke might be one of promising resources due to gasification processes. The gasification of petroleum coke can improve economic value of oil refinery industries by handling cheap, toxic wastes in an environment-friendly way. In this study, $CO_2$ gasification reaction kinetics of petroleum coke, various coals and mixing coal with petroleum coke have investigated and been compared by using TGA. The kinetics of $CO_2$ gasification has been performed with petroleum coke, 3 kinds of bituminous coal [BENGALLA, White Haven, TALDINSKY], and 3 kinds of sub-bituminous coal [KPU, LG, MSJ] at various temperature[$1100-1400^{\circ}C$].

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왕겨가스 에 의한 農용石油機關 의 驅動 에 관한 硏究 (An Experimental Study on the Farm Engine Driven by Rice Chaff Gas)

  • 이영재;조명제
    • 대한기계학회논문집
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    • 제7권2호
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    • pp.233-239
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    • 1983
  • Gasification of rice chaff has traditionally been used to produce a clean fuel suitable for lighting, heating and engine application. Since oil crisis, a series of experimental study has been performed to drive a farm engine by agricultural wastes. We produced a combustible gas from rice chaff with a fixed bed up-draught gasifier system, and applied it to a conventional farm kerosene engine. This experiment was quite successful one. We could drive the farm engine with maximum horse power of 9 PS by rice chaff gas which was fairly competitive to the continuous horse power of 10 PS obtained when kerosene was used. Problems of tar existence in gas have been discussed, but we are confident that these can be solved in near future. Development and application of the gasification process will help our farm economy, not only by conserving petroleum oil but by utilizing agricultural wastes.

고부가가치 화합물 제조를 위한 가스화 대상 폐기물 선정 및 자원화네트워크 구축 (Selection of Wastes and Establishment of Recycling Networks for the Manufacture of Higher Value Added Product by Gasification)

  • 성호진;구재회;임용택;김나랑;박수남;김수현;추수태
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.209.1-209.1
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    • 2010
  • 본 연구에서는 울산산업단지 및 인근 지자체에서 발생하는 가연성폐기물 중 화학산업의 원료로 공급하기 위하여 활용가능한 폐기물들을 선정하고, 선정된 폐기물들의 안정적인 수급을 위하여 자원순환네트워크를 구축하는 연구를 수행하였다. 활용가능한 폐기물을 선정하기 위하여 먼저 선정기준을 설정하고, 울산지역에서 발생하는 가연성폐기물의 발생 및 처리현황, 폐기물의 특성 등을 고려하여 활용가능량을 산출하였다. 또한 이들 폐기물을 지속적으로 수급하기 위하여 울산산업단지 기업과 지자체, 합성가스 이용 업체 등으로 구성된 컨소시움을 구축하는 방안을 제안하였다.

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