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首页> 外文期刊>Energies >Distribution of Clay Minerals in Light Coal Fractions and the Thermal Reaction Products of These Clay Minerals during Combustion in a Drop Tube Furnace
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Distribution of Clay Minerals in Light Coal Fractions and the Thermal Reaction Products of These Clay Minerals during Combustion in a Drop Tube Furnace

机译:下落管式炉内燃烧过程中粘土矿物在轻质煤中的分布及这些粘土矿物的热反应产物

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To estimate the contribution of clay minerals in light coal fractions to ash deposition in furnaces, we investigated their distribution and thermal reaction products. The light fractions of two Chinese coals were prepared using a 1.5 g·cm ?3 ZnCl 2 solution as a density separation medium and were burned in a drop-tube furnace (DTF). The mineral matter in each of the light coal fractions was compared to that of the relevant raw coal. The DTF ash from light coal fractions was analysed using hydrochloric acid separation. The acid-soluble aluminium fractions of DTF ash samples were used to determine changes in the amorphous aluminosilicate products with increasing combustion temperature. The results show that the clay mineral contents in the mineral matter of both light coal fractions were higher than those in the respective raw coals. For the coal with a high ash melting point, clay minerals in the light coal fraction thermally transformed more dehydroxylation products compared with those in the raw coal, possibly contributing to solid-state reactions of ash particles. For the coal with a low ash melting point, clay minerals in the light coal fraction produced more easily-slagging material compared with those in the raw coal, playing an important role in the occurrence of slagging. Additionally, ferrous oxide often produces low-melting substances in coal ash. Due to the similarities of zinc oxide and ferrous oxide in silicate reactions, we also investigated the interactions of clay minerals in light coal fractions with zinc oxide introduced by a zinc chloride solution. The extraneous zinc oxide could react, to a small extent, with clay minerals in the coal during DTF combustion.
机译:为了评估轻煤馏分中粘土矿物对熔炉灰分沉积的贡献,我们研究了它们的分布和热反应产物。使用1.5 g·cm?3 ZnCl 2溶液作为密度分离介质制备两种中国煤的轻质馏分,并在滴管炉(DTF)中燃烧。将每个轻煤馏分中的矿物质与相关原煤的矿物质进行了比较。使用盐酸分离法分析了来自轻质煤馏分的DTF灰分。 DTF灰分样品的酸溶性铝馏分用于确定随燃烧温度升高而产生的无定形硅铝酸盐产物的变化。结果表明,两种轻煤馏分的矿物质中的粘土矿物含量均高于相应的原煤。对于具有高灰分熔点的煤,与原煤相比,轻质煤馏分中的粘土矿物会热转化更多的脱羟基产物,可能有助于灰分颗粒的固态反应。对于灰分熔点低的煤,轻质煤馏分中的粘土矿物比原煤中的粘土矿物质更易结渣,在结渣的发生中起重要作用。另外,氧化亚铁经常在煤灰中产生低熔点物质。由于硅酸盐反应中氧化锌和氧化亚铁的相似性,我们还研究了轻质煤馏分中粘土矿物与氯化锌溶液引入的氧化锌之间的相互作用。在DTF燃烧过程中,多余的氧化锌可在较小程度上与煤中的粘土矿物发生反应。

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