• 제목/요약/키워드: Bio-coal

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고함수율 농업부산물을 이용한 Bio-coal의 가능성에 대한 연구 (A Study on Possibility of Bio-coal Manufacturing using High Moisture Agricultural by- Products)

  • 김민정;박경주;이재영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권3호
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    • pp.1-6
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    • 2015
  • The rapid industrial development is facing problem due to energy depletion in Korea. So that, it can be necessary to develop alternative energy sources. Alternative energy like biofuels can be produced by using waste fuel, which is ecofriendly. As we know, the organic waste was banned to dump in landfill and ocean dumping. The most practicable method usually used to reduce organic waste is getting feedstuff or composting, considering the discharge characteristics of agricultural by-products waste treatment were selected. In this study, bio-coal was made using agriculture by product. Biocoal was prepared by adding 50 g of uniformly mixture into reactor and was carbonized at low temperatures 210, 220, and 230℃. The time of reaction was 1, 2 and 3 hours. Bio-coal approximately was similar to the standard of solid fuels. Other characteristics of fuel were also studied. The experiments which were analyzed were moisture content and calorific value, ash, chlorine, sulfur and heavy metals analysis as mercury, cadmium, lead, arsenic, and chromium. As a result, bio-coal 220℃, 2 hours was the optimal conditions while heating.

바이오가스를 이용한 가스화기 운전 방안 (The Gasifier Operation Method using Bio Gas)

  • 이중원;주용진;정재화;박세익;김의식
    • 한국수소및신에너지학회논문집
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    • 제24권3호
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    • pp.249-254
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    • 2013
  • The integrated gasification combined cycle (IGCC) system is well known for its high efficiency compared with other coal fueled power generation system. The aim of this study is to confirm the feasibility of using bio gas in coal feeding system and syngas recirculation system. The effects of using bio gas in the gasifier on the syngas composition were investigated through simulations using the Aspen Plus process simulator. It was found that these changes had an influence on the syngas composition of the final stream and bio gas can be used in a gasifier system.

Tavan Tolgoi Coal Bed Methane에 대한 몽골에서의 타당성 조사 (Pre-feasibility Study in Mongolia Tavan Tolgoi Coal Bed Methane)

  • 조원준;유혜진;이제설;이현찬;주우성;임옥택
    • 한국수소및신에너지학회논문집
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    • 제29권1호
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    • pp.124-129
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    • 2018
  • Methane is the cleanest fuel and supplies by many distributed type: liquefaction natural gas (LNG), compressed natural gas (CNG), and pipeline natural gas (PNG). Natural gas is mainly composed by methane and has been discovered in the oil and gas fields. Coal bed methane (CBM) is also one of them which reserved in coalbed. This significant new energy sources has emerge to convert an energy source, hydrogen and hydrogen-driven chemicals. For this CBM, this paper was written to analyze the geological analysis and reserves in Mongolian Tavan Tolgoi CBM coal mine and to examine the application field. This paper is mainly a preliminary feasibility report analyzing the business of Tavan Tolgoi CBM and its exploitable gas.

Coal Bed Methane을 사용한 다양한 응용 기술에 대한 고찰 (A Study on Various Application Technologies Using Coal Bed Methane)

  • 조원준;이제설;유혜진;이현찬;주우성;임옥택
    • 한국수소및신에너지학회논문집
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    • 제29권1호
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    • pp.130-137
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    • 2018
  • Now discusses the potential use and applications of coal bed methane (CBM) in various industries. One of the options for gas monetization is gas to power (GTP), sometimes called gas to wire (GTW). Electric power can be an intermediate product, such as in the case of mineral refining in which electricity is used to refine bauxite into aluminum; or it can be an end product that is distributed into a large utility power grid. For stranded gas, away from the regional markets, the integration of the ammonia and urea plants makes commercial sense. These new applications, if established, could lead to a surge in demand for methanol plants.

석탄과 보조제로 바이오매스를 사용한 바이오 고형연료의 혼소 특성 (Characteristics of the Co-Combustion of Coal and Bio-Solid Fuel using Biomass as an adjunct)

  • 현완수;진용균;조은지;한현구;민선웅;여운호
    • 유기물자원화
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    • 제28권2호
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    • pp.49-57
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    • 2020
  • 하수 슬러지는 수분 함량이 높고, 발열량이 낮아 하수 슬러지를 에너지원으로 사용하는데 어려움이 있다. 이런 하수 슬러지 특성을 개선하고, 화석 연료를 대체하기 위해 하수 슬러지와 목질계 바이오매스를 혼합한 바이오 고형연료를 생산하는 연구를 행하였다. 열중량 분석은 석탄과 5%, 10%, 15%의 바이오 고형연료를 각각 혼합하여 혼소할 경우 발생되는 특징을 연구하는 데에 활용되었다. 이 분석은 10℃/min씩 25℃에서 900℃까지 내부 온도를 올리는 비등온 조건하에서 수행되었다. 석탄 단일 시료를 석탄과 바이오 고형연료가 혼합된 시료와 비교하였을 경우 연소개시온도는 약간 변화가 일어났다. 하지만, 연소최대온도와 연소종료개시온도는 변화가 거의 없었다. 연소개시는 200 ~ 315 ℃에서 이뤄졌으며, 중량변화가 급격히 일어나는 열분해는 350 ~ 700 ℃에서 이뤄졌다. 혼소 반응속도 분석 결과 활성화 에너지는 혼합율이 높아질수록 낮아졌다. 그러므로 화력발전소에서 석탄과 바이오 고형연료를 혼소하는 것이 가능할 수 있을 것이다.

A Study on the Thermal and Chemical Characteristics of Wasted Coal for the Development of Low Cost Fuel

  • Lee, G.H.;Shim, J.D.
    • Agricultural and Biosystems Engineering
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    • 제3권2호
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    • pp.79-84
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    • 2002
  • The seawater involving diverse chemical elements was mixed with wasted coals to improve the quality. The thermal and chemical characteristics of these seawater-mixed coals were investigated and compared with those of original coals. The contents of MgO, $Na_2O$, and $K_2O$ were increased by mixing seawater in wasted coals. The content of $Na_2O$ in these coal samples was greatly increased due to the sodium, which was the main component of seawater. Thus, it was expected that fusion temperatures of these coal samples were decreased. Coal samples mixed with seawater showed that the rapid weight loss was started at the lower temperature than those of original coal samples. In these coal samples, the temperatures of maximum heat emission were lowered by average $61^{\circ}C.$. Thus, it is suggested that some chemical constituents of the seawater act an important role on lowering the ignition temperature of wasted coal. By mixing seawater into wasted coals, the calorific values were increased. Especially, calorific values were greatly increased in the coal samples of lower quality as Baksan A and B with the improvement of 15~20%.

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볏집, 톱밥 바이오매스와 석탄의 수증기 가스화반응 Kinetics 연구 (A Kinetic Study of Steam Gasification of Rice Straw, Saw Dust Biomass and Coal)

  • 송병호;주쉬에얀
    • Korean Chemical Engineering Research
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    • 제50권1호
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    • pp.76-82
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    • 2012
  • 볏짚 톱밥과 같은 바이오매스는 석탄과 함께 사용할 수 있는 잠재력이 큰 에너지원으로 이들을 가스화공정에 적용하면 수송용 연료같은 bio-oil을 생산할 수 있다. 본 연구에서는 상압의 열천칭 반응기(thermobalance)에서 톱밥, 볏짚, 갈탄, 역청탄, 무연탄의 수증기 가스화 반응특성을 수행하였으며, 가스화 온도 $600{\sim}850^{\circ}C$, 수증기 분압 30~90 kPa의 범위에서 조업변수들이 가스화반응속도에 미치는 영향을 조사하였다. 세 가지의 기체-고체 화학반응모델이 가스화반응의 거동을 예측하는 능력을 비교하였으며, modified volumetric reaction model을 사용하여 공정설계에 필수적인 kinetic 정보를 도출하였다. 두 가지 바이오매스와 세 가지 석탄 촤의 가스화반응성을 비교하였다. Arrhenius plot으로부터 얻어진 바이오매스와 석탄의 활성화에너지는 모두 문헌상의 범위에 속하였다. 각 연료에 대하여 수증기분압에 대한 반응차수를 결정하였으며, 가스화공정 설계의 기초데이타로서 겉보기 반응속도식을 제시하였다.

석탄연소재의 산도조절을 통한 농업적 활용 가능성 (Feasibility of Coal Combustion Ash on Acidity Regulation for Agricultural Use)

  • 오세진;강민우;김성철;이상수
    • 한국환경농학회지
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    • 제38권1호
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    • pp.10-16
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    • 2019
  • BACKGROUND: Coal ashes generated from thermal power plants have been known as beneficial materials for agricultural use because of their nutrient elements. However, there is limitation to recycle them due to their alkalinity. The objective of this study was to evaluate the effectiveness or safety of the coal ashes for their heavy metals on agricultural recycling when adjusted to pH of 5 with sulfuric acid. METHODS AND RESULTS: Concentration of hydrogen which is needed to adjust pH of coal ash was estimated by using a buffering curve and then the amount of sulfuric acid was changed by the estimation before incubation. Each of fly ash (FA) and bottom ash (BA) was collected from both thermal plants of Yeongdong (YD) and Yeongheung (YH). The pH values of coal ashes increased to 4.76 (from 4.34) after incubation with sulfuric acid for 56 days, closer to the targeted pH. Coal ashes also increased the contents of available phosphorus by 2-fold (165 mg/kg) and 11-fold (1,137 mg/kg) for YDBA and YDFA, respectively, compared to the control. CONCLUSION: The utilization of coal ash with its acidity regulation would be very beneficial to agriculture sector and further suggest promising environmental safety against heavy metals.

Study on Emission Control for Precursors Causing Acid Rain (VI) : Suitability of Aquatic Plant Biomass as a Co-combustion Material with Coal

  • Hauazawa, Atsushi;Gao, Shidong;Sakamoto, Kazuhiko
    • Asian Journal of Atmospheric Environment
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    • 제2권2호
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    • pp.102-108
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    • 2008
  • In China, energy and environmental problems are becoming serious owing to rapid economic development. Coal is the most problematic energy source because it causes indoor and outdoor air pollution, acid rain, and global warming. One type of clean coal technology that has been developed is the coal-biomass briquette (or bio-briquette, BB) technique. BBs, which are produced from pulverized coal, biomass (typically, agricultural waste), and a sulfur fixation agent (slaked lime, $Ca(OH)_2$) under high pressure without any binder, have a high sulfur-fixation effect. In addition, BB combustion ash, that is, the waste material, can be used as a neutralization agent for acidic soil because of its high alkalinity, which originates from the added slaked lime. In this study, we evaluated the suitability of alternative biomass sources, namely, aquatic plants, as a BB constituent from the perspective of their use as a source of energy. We selected three types of aquatic plants for use in BB preparation and compared the fuel, handling, and environmental characteristics of the new BBs with those of conventional BBs. Our results showed that air-dried aquatic plants had a higher calorific value, which was in proportion to their carbon content, than agricultural waste biomass; the compressive strength of the new BBs, which depends on the lignin content of the biomass, was high enough to bear long-range intracontinental transport in China; and the new BBs had the same emission control capacity as the conventional BBs.