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Performance of hot-gas cleanup technology for clean coal processing

机译:清洁煤加工热气清理技术的性能

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The integration of advanced coal-based power generation systems with hot-gas cleanup technology endows the former with higher efficiency and reduces their environmental impacts. Syngas from coal gasification or flue gas from combustion contains dust particulates that must be eliminated before the raw gas is burned in gas turbines to protect the turbine blade and control particulate emissions. The present work attempts to provide a general understanding of moving granular bed filters (MGBFs), which are regarded as a promising technology for hot-gas cleanup, and proposes a filtration technology for application to near-industrial environments. An experimental method was established to investigate the filtration processing of dust particulates under various operating conditions. The experimental facility included an air fan, two-stage gas heaters, a screw feeder for dust particulates, a measurement system to detect the size distribution of dust particulates, a filter granule supply device, a rotary valve, and an MGBF filled with filter granules. The collection efficiency of the MGBF was assessed at different temperatures ranging from room temperature to 500 ?C and granular mass flow rates of 300?1500 g/ min under a fixed filtration superficial velocity of 2100 cm/min and dust concentration 7500 ppmw. Variations in the outlet concentration and size distribution of dust particulates were measured to evaluate the dynamic characteristics of the cleanup process. Results revealed that an optimal mass flow rate must exist for high collection efficiency under specific operating temperatures. In addition, important design constraints were identified for the successful operation of the proposed MGBF system. The findings indicated that the proposed design could be useful in different cross-flow filter systems for gas cleanup. This work lays a solid foundation for future research on clean coal processing.
机译:具有热气清理技术的先进煤基发电系统的整合赋予了前者,效率更高,降低了它们的环境影响。来自煤气化或来自燃烧的烟气的合成气含有粉尘颗粒,在原料气体在燃气轮机中燃烧之前必须消除,以保护涡轮叶片并控制颗粒排放。目前的工作试图提供对移动颗粒床过滤器(MGBF)的一般性理解,被认为是热气清理的有希望的技术,并提出了用于近工业环境的过滤技术。建立实验方法,以研究各种操作条件下粉尘颗粒的过滤处理。实验设施包括空风扇,两级气体加热器,用于灰尘微粒的螺旋馈线,测量系统,用于检测灰尘颗粒的尺寸分布,过滤器颗粒供应装置,旋转阀和填充过滤器颗粒的MGBF 。在不同温度下评估MGBF的收集效率,从室温到500℃和颗粒质量流速,在固定过滤的浅表速度为2100cm / min,粉尘浓度7500ppmw的情况下,颗粒质量流速。测量出口浓度和粒度颗粒尺寸分布的变化,以评估清洁过程的动态特性。结果表明,在特定的工作温度下必须高收集效率存在最佳质量流量。此外,确定了重要的设计约束,以拟议的MGBF系统的成功运行。研究结果表明,该设计在不同的横流滤波器系统中可用于气体清理。这项工作为洁净煤处理的未来研究规定了坚实的基础。

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