首页> 外文会议>International Conference on Greenhouse Gas Technologies >Integration of coal gasification and packed bed CLC process for high efficiency and near-zero emission power generation
【24h】

Integration of coal gasification and packed bed CLC process for high efficiency and near-zero emission power generation

机译:煤气化和填料床CLC过程的集成高效率和近零发射发电

获取原文

摘要

The DemoCLOCK (Demonstration of a cost effective medium size Chemical Looping Combustion through packed beds using solid hydrocarbons as fuel for power production with CO2 capture) project is co-financed by the European Commission and is being developed by a consortium of 11 partners from 7 European countries. The objective of the project is to demonstrate the technical, economic and environmental feasibility for implementing packed bed based high temperature and high pressure chemical looping combustion in large-scale power plants. The aim of this paper is to present the preliminary results of a process simulation study of Integrated Gasification Chemical Looping Combustion (IG-CLC) plants, based on packed bed CLC reactors. The performance of complete IG-CLC power plants, including the coal gasification system, the CLC process and the power island, are predicted. Two configurations are addressed. In the first one, a gas-steam combined cycle is used, where the high temperature O2-depleted stream produced by a pressurized air reactor is expanded in a gas turbine. In the second option, power is generated by an advanced super critical steam cycle. The results obtained are reported in the paper and compared to competitive technologies considered by the EBTF (European Benchmarking Task Force). The results of the simulations indicate a high potential for this technology, with electric efficiencies 2.5 percentage points higher than the competitive IGCC plant with CO2 capture by physical absorption and more than 97% of CO2 avoided.
机译:Democlock(演示通过使用固体碳氢化合物作为电力生产燃料的填充床作为电力生产的填充床的成本有效的中型化学燃烧)项目由欧盟委员会共同资助,并由11个欧洲的11个合作伙伴的联盟开发国家。该项目的目的是展示在大型发电厂实施填充床的高温和高压化学环燃烧的技术,经济和环境可行性。本文的目的是展示基于填充床CLC反应器的综合气化化学循环燃烧(IG-CLC)植物的过程模拟研究的初步结果。预先预测完整IG-CLC发电厂的性能,包括煤气化系统,CLC工艺和电力岛。解决了两种配置。在第一个中,使用气体蒸汽组合循环,其中通过加压空气反应器产生的高温O2耗尽流在燃气轮机中膨胀。在第二个选项中,通过先进的超重临界蒸汽循环产生电力。纸质中报道了所得结果,并与EBTF考虑的竞争技术相比(欧洲基准工作组)。模拟的结果表明这项技术的高潜力,电效比竞争性IGCC工厂高2.5个百分点,通过物理吸收捕获,避免了97%的CO2。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号