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Separation of unburned carbon from fly ash using a concurrent flotation column

机译:使用同步浮选柱分离飞灰中未燃烧的碳

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In this study, a new concurrent flotation column that simulates the plug flow reactor was designed with the use of a static mixer, a froth separator column and an optional additional bubble generator for fly ash beneficiation. The objective was to improve the efficiency and effectiveness of unburned carbon removal from fly ash by minimizing energy costs. Cleaning tests were performed with and without the additional bubble genarator. Without the additional bubble generator unburned carbon in the ash product could be reduced to only 2.53%. Incidental loss of carbon particles and insufficient bubble generation were the main causes of poor carbon separation performance. By turning on the additional bubble generator it was aimed to assist bubble generation, to compensate bubble rupture and to recapture the detached or free carbon particles leaving the froth phase. With the additional bubble generator and under optimized conditions a froth product with 95% carbon recovery and a cleaned ash product with less than 1% unburned carbon was obtained. The separation process through the static mixer (feeder) and the separator column and the energy consumption of the unit were analyzed. It was seen that around 80% energy could be saved with the concurrent flotation column compared to conventional flotation.
机译:在这项研究中,通过使用静态混合器,泡沫分离器塔和可选的附加气泡发生器(用于粉煤灰的选矿),设计了一种模拟活塞流反应器的新型并行浮选塔。目的是通过最大程度地减少能源成本,提高从飞灰中去除未燃烧碳的效率和效率。在有或没有附加气泡发生器的情况下进行清洁测试。如果没有额外的气泡发生器,灰产品中未燃烧的碳可以减少到2.53%。碳颗粒的偶然损失和不足的气泡产生是差的碳分离性能的主要原因。通过打开附加的气泡发生器,其目的是协助气泡生成,补偿气泡破裂并重新捕获离开泡沫相的分离的或游离的碳颗粒。使用附加的气泡发生器并在优化的条件下,可获得具有95%碳回收率的泡沫产品和未燃烧碳少于1%的清洁灰产品。分析了通过静态混合器(进料器)和分离塔的分离过程以及单元的能耗。可以看出,与常规浮选相比,同时浮选柱可节省约80%的能量。

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