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首页> 外文期刊>MATEC Web of Conferences >Research of wood waste concentration influence on composite fuel energy characteristics based on low-grade 2b coal from “Borodinskoe” deposit
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Research of wood waste concentration influence on composite fuel energy characteristics based on low-grade 2b coal from “Borodinskoe” deposit

机译:基于“ Borodinskoe”矿床中低品位2b煤的木材废物浓度对复合燃料能量特性影响的研究

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A pyrolysis process of different coal samples into three different types of oxidizing medium (argon, air and steam) were studied by means of thermogravimetry. Two coal types with different metamorphism degree (lignite and bituminous coal) were used. The experimental procedure was carried out in non-isothermal conditions in temperature range from 373 K to 1273 K with 20 K/min heating rate. Purge gas consisted of argon and oxidizer with volumetric ratio 1:24 and had 250 ml/min flow rate. Kinetic parameters were defined by fitting procedure using Arrhenius-type equation with the first order reaction rate on conversion distribution function. The ignition and burnout indexes were calculated to evaluate sample reactivity at different oxidizing mediums. The highest reactivity values in same atmosphere were obtained for lignite because of higher particle special surface area. For same samples the higher reactivity was obtained in steam medium. The conclusion about some kind of synergy between carbon oxidation and pyrolysis could be made.
机译:通过热重分析法研究了不同煤样品在三种不同类型的氧化介质(氩气,空气和蒸汽)中的热解过程。使用了两种具有不同变质程度的煤(褐煤和烟煤)。实验过程在非等温条件下进行,温度范围为373 K至1273 K,加热速率为20 K / min。吹扫气体由体积比为1:24的氩气和氧化剂组成,流速为250 ml / min。动力学参数通过拟合程序使用Arrhenius型方程定义,其中一阶反应速率基于转化分布函数。计算起燃指数和燃尽指数以评估样品在不同氧化介质下的反应性。由于较高的颗粒比表面积,褐煤在相同气氛中获得了最高的反应性值。对于相同的样品,在蒸汽介质中可获得更高的反应性。可以得出碳氧化与热解之间协同作用的结论。

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