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MEASUREMENT OF SOLIDS CIRCULATION RATES WITH OPTICAL TECHNIQUES IN CIRCULATING BEDS AND COMPARISON TO PRESSURE DROP METHODS

机译:循环床中的光学技术测量固体循环速率及压力下降方法的比较

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The number of applications employing circulating fluidized beds has increased considerably over the last years following the important development of chemical looping technologies for power generation (combustion) or fuel conversion (reforming) with inherent CO_2 capture. The performance of these reactors is strongly determined by the amount of solids transferred from one reactor to the other, commonly referred to as the Solids Circulation Rate (SCR). The solids inventory, particle characteristics and gas velocities strongly influence the SCR. The determination of the SCR has been carried out using invasive and non-invasive measurement techniques. The direct measurement through solids collection in the loop seal is the most applied technique, but this technique requires opening of the loop seals and thus may be expensive, whereas other methods suffer from large inaccuracies. There is yet no optimal technique available that combines good accuracy with reasonable costs, as recently also discussed by Alghamdi et al. (1).
机译:在近年来,在过去几年中,在持续发展的发电(燃烧)或燃料转换(改革)具有固有的CO_2捕获的情况下,采用循环流化床的应用数量显着增加。这些反应器的性能强烈地由从一个反应器转移到另一个反应器的固体量来确定,通常称为固体循环速率(SCR)。固体库存,颗粒特性和气体速度强烈影响SCR。使用侵入性和非侵入性测量技术进行SCR的测定。环形密封中固体收集的直接测量是最施加的技术,但是该技术需要开口环封,因此可能是昂贵的,而其他方法遭受大的不准确性。目前没有可用的最佳技术,其结合了合理的成本,最近也由Alghamdi等人讨论。 (1)。

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