首页> 外文会议>International Conference on Greenhouse Gas Control Technologies >CO_2 Processing and Multi-pollutant Control for Oxy-fuel Combustion Systems Using an Advanced CO_2 Capture and Compression Unit (CO_2CCU)
【24h】

CO_2 Processing and Multi-pollutant Control for Oxy-fuel Combustion Systems Using an Advanced CO_2 Capture and Compression Unit (CO_2CCU)

机译:CO_2使用先进的CO_2捕获和压缩单元(CO_2CCU)的氧燃料燃烧系统的CO_2处理和多污染物控制

获取原文

摘要

Oxy-fuel combustion of fossil fuels produces a CO_2-rich gas stream with some impurities, such as nitrogen, argon, oxygen, nitrogen oxides, heavy metals and sulphur oxides, whose concentrations vary based on the type of fuel, combustion conditions, plant configuration, and other process related parameters. To control the greenhouse gas (GHG) emissions from these plants and sustain their operational competitiveness in a carbon constrained world, the CO_2 in the flue gas stream has to be captured, cleaned up and compressed to make it suitable for pipeline transport and permanent storage in geological formations. The flue gas CO_2 capture and processing, including integrated multi-pollutant control, provides a feasible and viable technological pathway towards this goal. For oxy-fuel combustion systems, the CO_2 capture is best achieved by physical gas separation through a series of compression and cooling stages to liquefy and separate CO_2 from noncondensable gases in the flue gas stream. The effectiveness of the CO_2 capture and compression system depends on the process design and assessed using removal efficiency, level of purification and energy demand for a unit of captured CO_2. If the CO_2 capture process can also simultaneously remove other pollutants in the gas stream, then the whole process becomes more efficient and cost-effective. In this case, implementing an elaborate flue gas pre-treatment system will not be necessary. Hence, CO_2 capture technologies that are capable of simultaneously controlling emissions of multiple pollutants offer the potential to achieve emissions reduction at lower cost and reduced footprint, when compared to conventional emission control systems. For the new oxy-coal fired power plants, multi-pollutant control technologies can help designers of these plants select effective and less expensive compliance strategies, compared with compliance choices made when the requirements are addressed individually. CanmetENERGY has developed and successfully implemented an advanced and proprietary CO_2 capture and compression unit (CO_2CCU) that is capable of capturing and generating a relatively pure CO_2 product stream, while simultaneously removing the pollutants such as nitrogen oxides, sulphur oxides and mercury in the process condensate streams. The pilot-scale unit is currently integrated with the existing 0.3 MWth oxy-fuel Vertical Combustor Research Facility. This advanced CO_2 capture system represents an integrated approach to oxy-fuel combustion with multi-pollutant and CO_2 capture and provides a unique test platform for CO_2 processing. In this paper, we present and discuss the recent pilot-scale test results of CanmetENERGY's CO_2CCU. The unit was used to conduct experiments with a broad range of flue gas compositions, including different levels of CO_2 concentrations and a host of impurities in the flue gas stream. The real-time measurements of CO_2 product and vent stream gas compositions as well as the analysis of condensate streams provide insight into the type of chemical reactions that are taking place under different pressure, temperature, and moisture levels. The experimental results help to explain some of the chemical reactions involved in the CO_2 capture and compression for better optimizing the capture process.
机译:化石燃料的氧燃料燃烧产生具有一些杂质的富含CO_2的气流,例如氮气,氩气,氧,氮氧化物,重金属和硫氧化物,其浓度基于燃料,燃烧条件,植物配置的类型而变化和其他过程相关参数。控制这些植物的温室气体(GHG)排放并维持其在碳限制的世界中的运营竞争力,必须捕获烟道气流中的CO_2,清理并压缩,以使其适用于管道运输和永久存储地质形成。烟气CO_2捕获和加工,包括集成的多污染物控制,为此目标提供了可行和可行的技术途径。对于氧气燃料燃烧系统,通过通过一系列压缩和冷却级来最佳地实现CO_2捕获,以液化和分离来自烟道气流中的不可调味的气体的液化和单独的CO_2。 Co_2捕获和压缩系统的有效性取决于过程设计,并使用去除效率,净化效率水平和捕获的CO_2单位进行评估。如果CO_2捕获过程也可以同时去除气流中的其他污染物,则整个过程变得更加有效和成本效益。在这种情况下,不需要实施精心烟道气预处理系统。因此,与传统排放控制系统相比,能够同时控制多种污染物排放的CO_2捕获技术能够以较低的成本降低减少排放和降低的占地面积。对于新的氧气燃煤发电厂,多污染物控制技术可以帮助这些工厂的设计者选择有效和更便宜的合规策略,与单独解决要求时所做的合规选择。 Canmetenergy已经开发并成功地实施了能够捕获和产生相对纯度的CO_2产物流的先进和专有的CO_2捕获和压缩单元(CO_2CCU),同时在该过程中同时除去氮氧化物,硫氧化物和汞等污染物溪流。试点级单元目前与现有的0.3 MWTO氧燃料立式燃烧器研究设施集成在一起。这种高级CO_2捕获系统表示具有多污染物和CO_2捕获的氧燃料燃烧的综合方法,并为CO_2处理提供独特的测试平台。在本文中,我们展示并讨论了Canmetenergy的CO_2CCU的最近试验规模测试结果。该单元用于进行具有宽范围烟气组合物的实验,包括不同水平的CO_2浓度和烟道气流中的杂质。 CO_2产品和通气流气体组合物的实时测量以及冷凝水流的分析提供了在不同压力,温度和水分水平下发生的化学反应类型的洞察。实验结果有助于解释CO_2捕获和压缩中涉及的一些化学反应,以便更好地优化捕获过程。

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