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首页> 外文期刊>The Korean journal of chemical engineering >Efficient in situ drying of low rank coal in a pressurized down-flow flash dryer
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Efficient in situ drying of low rank coal in a pressurized down-flow flash dryer

机译:在加压下流闪蒸干燥机中高效地进行低级煤的原位干燥

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摘要

Flash drying of low rank coal with synthesis gas was addressed by using a pressurized down-flow dryer. The proposed method is a potential approach to secure gaseous water that is required in coal processing by utilizing moisture in the low rank coal. The drying process was promoted by increasing the initial temperature of the synthesis gas as a drying medium and decreasing the particle size of the coal. The moisture removal rate of the coal using synthesis gas at 9 bars and 500 A degrees C reached up to 97% within ten seconds. Although it is a higher temperature than that of fixed bed or moving bed dryer, outlet moisture laden synthesis gas had the low level of tar enough to be a feedstock of downstream catalytic process due to the short residence time in the dryer. The chemical composition changes of the coal during the drying resulted in reducing oxygen content to the atomic ratio of oxygen to carbon as 0.1 and enhancing its calorific value. Disappearance of hydroxyl functional group from the surface and physical reduction of the surface area of the coal decreased the moisture re-adsorption capacity, which could prevent the spontaneous combustion of the low rank coal.
机译:低级煤与合成气的快速干燥是通过使用加压下流干燥器解决的。所提出的方法是通过利用低等级煤中的水分来确保煤加工中所需的气态水的潜在方法。通过增加作为干燥介质的合成气的初始温度并减小煤的粒径来促进干燥过程。使用合成气在9巴和500 A的温度下,煤的水分去除率在10秒内达到了97%。尽管其温度高于固定床或移动床干燥机的温度,但由于在干燥机中的停留时间短,出口含水量高的合成气的焦油含量低,足以作为下游催化过程的原料。干燥期间煤的化学组成变化导致氧含量降低至氧与碳的原子比为0.1,并提高了其热值。羟基官能团从表面的消失和煤表面积的物理减小降低了水分的再吸收能力,这可以防止低等级煤的自燃。

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