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Study of Pore Fractal Structure and Combustion Performance on Efficient Compound Coal

机译:高效复合煤的孔隙分形结构与燃烧性能研究

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摘要

This paper is using coal, coal slurry and coal gangue of Huaibei mining area as efficient complex coal blending samples, carrying on the study that the pore fractal structure has effect on supercritical fluidized bed combustion, which shows that the amount of coal gangue has great effect on compound coal quality; fractal dimension of compound coal along with a single coal ratio change presents a monotone change and when the fractal dimension from 2.429 gradually increases to 2.518, the ignition temperature from 586 °C falls to 457 °C, easy ignition burning; when the amount of coal gangue of compound coal from 10 % falls to 30 %, the ash melting point rises from 1370 °C to 1450 °C, the slag-bonding intensity decreases when they are burning.
机译:本文以淮北矿区的煤,煤浆和煤石为有效的复杂掺煤样品,研究了孔隙分形结构对超临界流化床燃烧的影响,表明煤石的量具有很大的影响。复合煤质量;复合煤的分形维数随单一煤比的变化呈现单调变化,当分形维数从2.429逐渐增大至2.518时,着火温度从586°C下降至457°C,易着火燃烧;当复合煤的煤石含量从10%下降到30%时,灰分熔点从1370°C升高到1450°C,燃烧时炉渣结合强度降低。

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