• 제목/요약/키워드: Coal utilization technology

검색결과 46건 처리시간 0.03초

저등급 석탄으로부터 초청정석탄 제조 기술 (Technology for the Preparation of Ash-free Coal from Low Rank Coal(LRC))

  • 이시훈;김상도
    • Korean Chemical Engineering Research
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    • 제46권3호
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    • pp.443-450
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    • 2008
  • 고유가 대응방안으로 저등급 석탄의 효과적인 활용기술에 대해 고찰하였다. 현재 산업체에서 사용하는 석탄 중에 갈탄과 아역청탄이 저등급 석탄에 속하며 매장량이 풍부하고 세계적으로 고르게 분포되어 있지만 높은 수분 함량과 자연발화 가능성으로 인해 활용이 많이 되지 않고 있다. 본 논문에서는 저등급 석탄으로부터 화학적 정제기술을 이용하여 초청정석탄을 제조하는 기술에 대하여 고찰하였다. 회분 제거기술인 UCC 공정과 가연성분 추출기술인 Hyper Coal 공정을 비교하였다. 회분 제거기술인 UCC(Ultra Clean Coal) 공정은 Hyper Coal 공정에 비해 단순하다는 장점이 있지만 생성물의 회분 농도가 0.1% 이상으로 높다. 가연성분 추출 기술인 Hyper Coal 공정은 용매추출과 이온제거공정 등 구성은 복잡하지만 회분이 200ppm 이하로 생성된다. 초청정석탄은 오일과 동일 등급의 초 청정연료로써 산업용 석유를 대체하고 장기적으로는 IGCC와 IGFC, 그리고 차세대 고도연소기술의 연료로 활용될 수 있을 것이다.

Performance of bricks and brick masonry prism made using coal fly ash and coal bottom ash

  • Verma, Surender K.;Ashish, Deepankar K.;Singh, Joginder
    • Advances in concrete construction
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    • 제4권4호
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    • pp.231-242
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    • 2016
  • The major problem of a coal combustion-based power plant is that it creates large quantity of solid wastes. So, to achieve the gainful use of waste materials and to avoid other environmental problems, this study was undertaken. The quantity of coal ash by-products, particularly coal fly ash and coal bottom ash has been increasing from the coal power plants around the world. The other objective of this study was to explore the possibility of utilization of coal ash in the production of ash bricks. In 15 different mixes, Mix Designation M-1 to M-15, the varying percentages of lime and gypsum were used and sand was replaced with coal bottom ash. Further, it has been noticed that the water absorption and compressive strength of mix M-15 is 13.36% and 7.85 MPa which is better than the conventional bricks. The test results of this investigation show that the prism strength of coal ash masonry prisms was more than that of the conventional bricks.

Strength and durability characteristics of bricks made using coal bottom and coal fly ash

  • Ashish, Deepankar Kumar;Verma, Surender Kumar;Singh, Joginder;Sharma, Namesh
    • Advances in concrete construction
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    • 제6권4호
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    • pp.407-422
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    • 2018
  • The study evaluates properties of brick having coal ash and explores the possibility of utilization of coal bottom ash and coal fly ash as an alternative raw material in the production of coal ash bricks. Lower cement content was used in the investigations to attain appropriate strength and prohibit high carbon content that is cause of environmental pollution. The samples use up to 7% of cement whereas sand was replaced with bottom ash. Bricks were tested for compressive strength, modulus of rupture, ultrasonic pulse velocity (UPV), water absorption and durability. The results showed mix proportions of bottom ash, fly ash and cement as 1:1:0.15 i.e., M-15 achieved optimum values. The coal ash bricks were well bonded with mortar and could be feasible alternative to conventional bricks thus can contribute towards sustainable development.

2010 가스화 기술 컨퍼런스를 중심으로 살펴본 석탄 가스화 기술의 개발 동향 및 상업화 전개 현황 (Research and Development & Commercial Deployment Status for Coal Gasification Technology - Mainly from GTC 2010)

  • 이진욱;유영돈;윤용승
    • 에너지공학
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    • 제20권2호
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    • pp.123-142
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    • 2011
  • 최근의 에너지 기술 개발 동향 중의 하나로서 화석에너지를 고청정 기술로 활용하는 것이며 대표적인 기술로 석탄가스화 기술을 들 수 있다. 석탄가스화 기술은 IGCC, 합성원유 및 합성천연가스 생산, 메탄올 또는 DME 등의 화학원료 생산 등에 적용할 수 있으므로 여러 선진 기술사들이 보다 진보된 기술을 개발하고 있으며 시장 선점을 위하여 다양한 노력을 기울이고 있다. 현재 미국과 유럽뿐만 아니라 이웃나라인 일본과 중국에서도 수천톤/일급의 대형화 기술의 개발을 거의 완료한 단계이다. 반면에 석탄에너지 활용이 필수적인 우리나라의 경우 아직 소규모 플랜트를 활용한 요소기술 개발에 머물러 있으므로 향후 이 분야에 대한 기술 개발에 많은 관심을 가져야 한다고 판단된다. 이에 본고에서는 석탄가스화 기술에 관한 전문 기술 교류의 컨퍼런스로서 가장 최근에 개최된 '2010 가스화 기술 컨퍼런스'에서 주요 기술 보유 업체에서 발표한 자료를 중심으로 하여 석탄가스화 기술 개발 동향 및 이들 업체들의 시장 선점을 위한 상업화 전개 동향을 살펴보았다.

Study on the propagation mechanism of stress wave in underground mining

  • Liu, Fei;Li, Lianghui
    • Computers and Concrete
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    • 제25권2호
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    • pp.145-154
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    • 2020
  • For the influence of the propagation law of stress wave at the coal-rock interface during the pre-blasting of the top coal in top coal mining, the ANSYS-LS/DYNA fluid-solid coupling algorithm was used to numerical calculation and the life-death element method was used to simulate the propagation of explosion cracks. The equation of the crushing zone and the fracturing zone were derived. The results were calculated and showed that the crushing radius is 14.6 cm and the fracturing radius is 35.8 cm. With the increase of the angles between the borehole and the coal-rock interface, the vibration velocity of the coal particles and the rock particles at the interface decreases gradually, and the transmission coefficient of the stress wave from the coal mass into the rock mass decreases gradually. When the angle between the borehole and the coal-rock interface is 0°, the overall crushing degree is about 11% and up to the largest. With the increase of the distance from the charge to the coal-rock interface, the stress wave transmission coefficient and the crushing degree of the coal-rock are gradually decreased. At the distance of 50 cm, the crushing degree of the coal-rock reached the maximum of approximately 12.3%.

Numerical calculation and test of the composite materials under dynamic loading

  • Liu, Fei;Li, Lianghui
    • Steel and Composite Structures
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    • 제38권1호
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    • pp.79-86
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    • 2021
  • Due to the complex geological conditions, a large number of high quality coal seams was buried in the western of China which cannot be mining in open-pit methods. The dynamic properties of that coal cannot be studied easily in real site for the complex working condition. The compound coal blocks made on the basis of the real situation were studied in the laboratory. The physical and mechanical properties of the compound coal blocks and the raw coal were contrasted by using the UCS tests. The results show that the compound coal blocks made by mixing coal powder, cement and water in proportion of 2.5:2:1 are the closest to that of standard raw coal. Then the propagation of strain waves and crushing effects on the coal were studied in the compound coal blocks by using the super dynamic strain test system and the numerical calculated method of ANSYS/LS-DYNA. The results show that the diameter of the crushing zone in the compound coal blocks was similar to that in the numerical results. The fractures distribution in laboratory tests also has a similar trend to the calculation results. The measured strain waves at the distance of 50 cm, 100 cm, and 150 cm from the center of the charge are mainly concerned at -1.0×104 με and have a similar trend as that in the numerical simulation.

석탄가스화 기술의 최신 개발 동향 및 상업화 현황 (The Newest Technology Development and Commercialization Status of Coal Gasification)

  • 이진욱;윤용승;강원석
    • 에너지공학
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    • 제24권3호
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    • pp.150-163
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    • 2015
  • 가스화 기술은 석탄, 중질잔사유, 펫코크, 등의 저급 화석연료를 고효율 및 고청정으로 활용할 수 있는 대표적인 차세대 화석연료 활용기술로서 관련 시장은 지속적으로 그리고 급속도로 팽창하고 있다. 수년전만 하더라도 기존 미분탄 활용 기술에 비하여 대용량화 및 이용률 등의 한계가 지적되어 왔으나 최근에는 이러한 한계들이 대부분 극복되고 있으며, 미래에는 가스터빈 또는 산소제조를 위한 이온전달 멤브레인 등의 관련 기술의 지속적인 발전으로 인하여 보다 경쟁력이 있는 기술이 될 것으로 예상된다. 초기에는 미국과 유럽에서 기술 개발 및 시장을 주도하여 왔으며 최근에는 중국이 매우 빠른 속도로 대용량화 기술 개발을 완료하여 자국에서 시장 확대 및 외국으로의 진출을 노리고 있다. 특히 석탄가스화 기술은 이산화탄소 포집 기술을 포함할 경우 매우 매력적인 기술이며, 우리나라와 같이 천연가스 가격이 비싼 나라에서는 석탄가스화에 의한 천연가스 생산 플랜트가 지금도 충분한 경제성을 가진다는 점 등을 고려하면 석탄가스화 기술은 지속적으로 관심을 가져야 하는 기술이다. 이에 본고에서는 가스화 기술에 관한 세계 최대의 컨퍼런스인 2014 가스화 기술 컨퍼런스에서의 자료와 최신 자료들을 활용하여 주요 기술 보유 업체들의 최근의 기술개발 및 상업화 동향을 살펴보았다.

Stability analysis of settled goaf with two-layer coal seams under building load-A case study in China

  • Yao, Lu;Ning, Jiang;Changxiang, Wang;Meng, Zhang;Dezhi, Kong;Haiyang, Pan
    • Geomechanics and Engineering
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    • 제32권3호
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    • pp.245-254
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    • 2023
  • Through qualitative analysis and quantitative analysis, the contradictory conclusions about the stability of the settled goaf with two-layer coal seams subject to building load were obtained. Therefore, it is necessary to combine the additional stress method and numerical simulation to further analyze the foundation stability. Through borehole analysis and empirical formula analogy, the height of water-conducting fracture zone in No.4 coal and No.9 coal were obtained, providing the calculation range of water-conducting fracture zone for numerical simulation. To ensure the accuracy of the elastic modulus of broken gangue, the stress-strain curve were obtained by broken gangue compression test in dried state of No.4 coal seam and in soaking state of No.9 coal seam. To ensure the rationality of the numerical simulation results, the actual measured subsidence data were retrieved by numerical simulation. FISH language was used to analyze the maximum building load on the surface and determine the influence depth of building load on the foundation. The critical building load was 0.16 MPa of No.4 settled goaf and was 1.6 MPa of No.9 settled goaf. The additional stress affected the water-conducting fracture zone obviously, resulted in the subsidence of water-conducting fracture zone was greater than that of bending subsidence zone. In this paper, the additional stress method was analyzed by numerical simulation method, which can provide a new analysis method for the treatment and utilization of the settled goaf.