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Slagging Characteristics of Co-Combustion of Water Hyacinth Biomass and Coal

机译:水葫芦生物质与煤共燃的结渣特性

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Due to the pollution caused by coal combustion for power generation and the low comprehensive efficiency of biomass direct combustion for power generation, biomass and coal co-combustion for power generation has become the future development trend. To mitigate the hazards of slagging in the actual production of coal and water hyacinth co-combustion for power generation, combined with slagging discrimination indices, X-ray fluorescence (XRF) and X-ray diffraction (XRD) were applied to study the effects of mixing ratios, temperature, and additives on the slagging characteristics of water hyacinth mixed anthracite combustion. At higher ashing temperatures, the K and Cl content in the ash was reduced, which helped to reduce slagging. CaO can compete with the fuel's K and react preferentially with Si and Al, leading to reduced production of KAlSiO4 and KAlSi3O8. Kaolinite can weaken the function of K as a Cl carrier, allowing K to form complex potassium aluminosilicates with Si and Al. According to the comprehensive analysis of six ash sample slagging indexes, water hyacinth ash is serious slagging, anthracite ash is medium slagging, and the co-combustion of water hyacinth and coal can change the degree of ash slagging to a certain extent. Kaolin has a better-mitigating effect than CaO in preventing the slagging of mixed ash. These findings provide a starting point for the combustion of aquatic biomass with coal.
机译:由于燃煤发电造成的污染和生物质直燃发电综合效率低,生物质与煤共燃发电已成为未来的发展趋势。为减轻煤葫芦共燃发电实际生产中结渣的危害,结合结渣判别指标,采用X射线荧光(XRF)和X射线衍射(XRD)研究了混合比、温度和添加剂对水葫芦混合无烟煤燃烧结渣特性的影响。在较高的灰化温度下,灰分中K和Cl含量降低,有助于减少结渣。CaO可以与燃料的K竞争,并优先与Si和Al反应,导致KAlSiO4和KAlSi3O8的产量减少。高岭石可以削弱K作为Cl载体的功能,使K与Si和Al形成络合的钾铝硅酸盐。根据对6个灰分样品排渣指标的综合分析,水葫芦灰为严重结渣,无烟煤灰为中等排渣,水葫芦与煤的共燃可以在一定程度上改变灰渣的结渣程度。高岭土在防止混合灰渣方面比CaO具有更好的缓解效果。这些发现为水生生物质与煤的燃烧提供了起点。

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