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Experimental study on the magnetic characteristics of coal fly ash at different combustion temperatures

机译:不同燃烧温度下粉煤灰磁特性的实验研究

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摘要

Two different coals containing iron minerals were combusted in a drop tube furnace at different temperatures. The ash samples collected were analyzed in detail to investigate the transformation behaviors of iron-bearing minerals and the magnetic characteristics of coal fly ash (FA). The vibrating sample magnetometer (VSM) was used to analyze the magnetic characteristics of the ash samples and Mossbauer spectroscopy was used to analyze the iron-bearing components in FA. The results indicate that combustion temperature does not significantly affect the crystals phases formed in FA, but does change the relative content of crystals. With an increase in temperature, the relative content of maghemite (-Fe2O3) and magnetite (Fe3O4) decreases, while the relative content of hematite (-Fe2O3) increases. The rising combustion temperature also results in a decreasing trend on saturation magnetization of FA. Furthermore, there is a significant positive correlation between the equivalent content of iron-bearing minerals and the saturation magnetization of FA, which can be applied to remove the particulates from flue gas more efficiently.
机译:两种不同的含铁矿物的煤在滴管炉中在不同温度下燃烧。对收集的灰分样品进行了详细分析,以研究含铁矿物的转化行为以及粉煤灰(FA)的磁特性。振动样品磁力计(VSM)用于分析灰分样品的磁性,Mossbauer光谱用于分析FA中的含铁成分。结果表明,燃烧温度不会显着影响FA中形成的晶体相,但会改变晶体的相对含量。随着温度的升高,磁赤铁矿(-Fe2O3)和磁铁矿(Fe3O4)的相对含量降低,而赤铁矿(-Fe2O3)的相对含量增加。升高的燃烧温度还导致FA的饱和磁化强度下降。此外,含铁矿物质的当量含量与FA的饱和磁化强度之间存在显着的正相关关系,这可用于更有效地从烟道气中去除颗粒物。

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