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Microstructure contradistinction for indirect/direct desulfurization product layer of limestone particle in coal-fired flue gas

机译:燃煤烟气中石灰石颗粒间接/直接脱硫产物层的微观结构对比

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The micro morphology of limestone sorbent is a key for improving the SO2 removal efficiency in the coal-fired power plant. The tube furnace system was built for imitating the indirect desulfurization reaction in traditional boiler atmosphere (65%N2, 15%CO2, 4.7%O2, 15%H2O, 0.3%SO2) and the direct desulfurization reaction in oxygen-fired atmosphere (80%CO2, 4.7%O2, 15%H2O, 0.3%SO2). The reacted limestone particle samples were observed by SEM and are analyzed by Fourier transformation 3-D reconstruction technique. It is shown that the sizes of internal pore within sorbent particle in two kind atmospheres differ by an order of magnitude, one is about 200 nm for indirect desulfurization, and the other is about 20 nm for direct desulfurization. The CaSO4 products of indirect desulfurization are chaotic derivatives with serious blockage, and the direct desulfurization product layer belongs to uniform honeycombed micro-structure without blockage. Those numerous micro-porous passages can guarantee continuous reactive substance transmission.
机译:石灰石吸附剂的微观形态是提高燃煤电厂SO2去除效率的关键。建立了管式炉系统,以模仿传统锅炉气氛中的间接脱硫反应(65%N2、15%CO2、4.7%O2、15%H2O,0.3%SO2)和氧燃烧气氛中的直接脱硫反应(80% CO2、4.7%O2、15%H2O,0.3%SO2)。通过SEM观察反应的石灰石颗粒样品,并通过傅里叶变换3-D重建技术对其进行分析。结果表明,两种气氛中吸附剂颗粒内部孔的大小相差一个数量级,一种用于间接脱硫,约为200 nm,另一种用于直接脱硫,约为20 nm。间接脱硫的CaSO4产物是具有严重阻塞的混沌衍生物,直接脱硫产物层属于均匀的蜂窝状微结构,无阻塞。那些众多的微孔通道可以保证连续的反应物质传输。

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