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Ash deposition behavior in co-combusting high-alkali coal and bituminous coal in a circulating fluidized bed

机译:在循环流化床中共燃烧高碱煤和沥青煤中的灰分沉积行为

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摘要

High contents of alkali and alkali earth metals (AAEMs) induce severe ash slagging and fouling during coal combustion. In this regard, co-combustion is an effective method to mitigate ash deposition. The ash deposition behavior in co-combusting high-alkali Zhundong (ZD) coal and a bituminous coal, i.e. Shenhua (SH) coal was tested in a 30 kW circulating fluidized bed test system. The results revealed that the condensation of Na2SO4 triggered the slag formation of ZD coal in the furnace. The Na-Ca-Fe eutectics were responsible for the melting or partial melting of slags at high temperatures. After blending SH coal with ZD coal, the volatilization of Na was effectively suppressed, and compacted slags practically disappeared at 20% blending ratio of SH coal. In the convective backpass, fine particles (< 10 mu m) tended to be deposited on the leeward side of the heating surface because of the eddy impaction. As the blending ratio of SH coal increased, the size distribution of fly ash shifted to a large size range, because of the dilution effect and capture of AAEMs by silicates or aluminosilicates. The minimum blending ratio of SH coal was recommended as 20% to mitigate the ash deposition tendency of ZD coal.
机译:碱和碱土金属高含量(AAEMS)在煤燃烧过程中诱导严重的灰分粘合和污垢。在这方面,共燃烧是减轻灰分沉积的有效方法。共燃烧高碱(ZD)煤和沥青煤中的灰分沉积行为,即申花(SH)煤在30 kW循环流化床试验系统中进行了测试。结果表明,Na2SO4的缩合引发了炉中ZD煤的渣形成。 Na-Ca-Fe Eutectics负责在高温下熔化或部分熔化。将SH煤与ZD煤混合后,有效地抑制了Na的挥发,压实的炉渣实际上以SH煤的20%混合比例消失。在对流后端,由于涡流,在加热表面的封端侧倾斜,细颗粒(<10μm)倾向于沉积在加热表面的背风侧。由于SH煤的混合比增加,粉煤灰的尺寸分布转移到大尺寸范围,因为通过硅酸盐或硅酸盐稀释效果和捕获AAEM。 SH煤的最小混合比建议为20%以减轻ZD煤的灰分沉积趋势。

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