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Unburnt carbon elutriation from pressurised fluidised bed combustion of Australian black coals

机译:澳大利亚黑煤加压流化床燃烧产生的未燃烧碳淘析

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摘要

A batch-fed bench-scale pressurised fluidised bed combustion (PFBC) facility was built to research the in-bed processes generating fine char particles during PFBC of Australian black coals. Elutriation of such particles is responsible for the combustion inefficiency and their combustion in the filter cake on high-temperature ceramic filters may contribute to the formation of 'sticky ash' and consequent cleaning difficulties. Measured carbon elutriation varied from coal to coal and the results agreed qualitatively with large-scale PFBC performance, allowing definition of satisfactory and unsatisfactory performance criteria. Carbon elutriation in PFBC was correlated tentatively with crucible swelling number although the range of values of the crucible swelling number needs to be extended. Carbon elutriation in PFBC did not correlate with volatile matter for the five Australian coals investigated in contrast with previous PFBC pilot plant studies on four Northem Hemisphere coals. The higher swelling coal produced a significantly larger average macro-pore diameter after devolatilisation in PFBC, which caused greater attrition of fine char from the particle surface during the char bumout stage.
机译:建立了一个分批进料的台式规模加压流化床燃烧(PFBC)设施,以研究澳大利亚黑煤在PFBC期间产生细炭颗粒的床内过程。此类颗粒的淘析是导致燃烧效率低下的原因,它们在高温陶瓷过滤器上的滤饼中燃烧可能会导致“粘灰”的形成并因此导致清洁困难。测得的碳淘析因煤而异,其结果在质量上与大型PFBC性能相符,从而可以定义令人满意的和不令人满意的性能标准。尽管需要扩大坩埚溶胀数的值范围,但PFBC中的碳淘析暂时与坩埚溶胀数相关。 PFBC中的碳淘析与所调查的五种澳大利亚煤炭中的挥发性物质无关,这与之前PFBC对四种北半球煤炭的中试研究相反。较高溶胀的煤在PFBC脱挥发分后产生了显着更大的平均大孔径,这导致在炭烧出阶段,细炭从颗粒表面产生更大的磨损。

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