Effect of preparation method of pyrolysis liquid mixed with coal on its ignition and combustion characteristics

K. Slyusarsky, A. Asilbekov
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Abstract

Relevance. The need to develop technological solutions to increase the competitiveness of pyrolysis processing of various wastes. Combustion of pyrolysis liquid in a mixture with coal is one of these solutions, which makes it possible to stabilize the properties of the obtained fuel and use in standard energy equipment. Aim. To determine the influence of the method of preparing a mixture of pyrolysis liquid and low-grade coal on its ignition and combustion characteristics, as well as on composition of the released gas-phase products, depending on the temperature of heating medium and concentration of the additive. Methods. Pyrolysis and oxidation characteristics were studied using thermogravimetric analysis, and formal kinetic constants were calculated using the Coates–Radfern method. Samples of mixed fuels were prepared by the methods of homogeneous mixing and surface wetting of pyrolysis liquid of rubber processing and low-grade coal. Ignition and combustion characteristics were determined using an experimental stand, and composition of gas-phase combustion products was determined using once-through gas analyzer. Results. The authors have determined the features of pyrolysis and oxidation of the pyrolysis liquid as well as the values of formal kinetics constants, indicating the physical nature of the factors that defining the rate of these processes. It was found that at 600 °C the ignition of the studied mixtures weakly depended on concentration of the additive, while at 700 and 800 °C the dependence was linear, and the differences between the samples prepared using different methods were insignificant. For samples obtained by the method of surface wetting, combustion of the additive occurred in the gas phase near the surface of the sample. For the samples obtained by the method of uniform mixing, it occurred predominantly in the bulk of the backfill. This led to more intense and complete coal combustion in these compositions due to more uniform releasing of heat and initiation of coal particles. The concentration curves of the NO, CO and CO2 release demonstrated, that behavior of the fuel mixture components was additive in terms of released gas-phase combustion products, as well as the absence of significant nonlinear effects over the entire studied range of temperatures and additive concentrations.
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热解液与煤混合的制备方法对其着火和燃烧特性的影响
相关性。需要开发技术解决方案,以提高各种废物热解处理的竞争力。将热解液与煤混合燃烧就是其中一种解决方案,这样可以稳定所获燃料的性质,并将其用于标准能源设备。目的根据加热介质的温度和添加剂的浓度,确定热解液和劣质煤混合物的制备方法对其点火和燃烧特性的影响,以及对释放的气相产物成分的影响。方法使用热重分析法研究了热解和氧化特性,并使用 Coates-Radfern 法计算了形式动力学常数。混合燃料样品是通过橡胶加工热解液和劣质煤的均匀混合和表面润湿方法制备的。使用实验台测定了点火和燃烧特性,并使用一次性气体分析仪测定了气相燃烧产物的成分。结果。作者确定了热解液的热解和氧化特征以及形式动力学常数的值,表明了决定这些过程速率的因素的物理本质。研究发现,在 600 °C 时,所研究混合物的点火与添加剂的浓度关系不大,而在 700 和 800 °C 时则呈线性关系,而且用不同方法制备的样品之间的差异也不大。对于采用表面润湿法制备的样品,添加剂的燃烧发生在样品表面附近的气相中。而采用均匀混合法制备的煤样,燃烧主要发生在回填土的主体中。由于热量释放更均匀,煤炭颗粒也更均匀,因此这些成分中的煤炭燃烧更强烈、更完全。氮氧化物、一氧化碳和二氧化碳的释放浓度曲线表明,就释放的气相燃烧产物而言,燃料混合物成分的行为是相加的,而且在整个研究的温度和添加剂浓度范围内没有明显的非线性效应。
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