Features of ignition and combustion of low-grade coal mixed with pyrolysis liquid

K. Slyusarskiy, A. Asilbekov
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Abstract

THE RELEVANCE of the study lies in the need to use pyrolysis liquid from wood processing for combustion in boilers of medium and low power as part of mixtures with coal. The unpredictability of the ignition and combustion properties of such mixtures, as well as the lack of calculation methods, predetermined a predominantly experimental approach to the study of these processes. At the same time, for the widespread implementation of such technological solutions in practice, it is necessary to have relatively simple methods for assessing the ignition and combustion characteristics of these components. THE PURPOSE. Synthesize samples of pyrolysis liquid from two different sorts of wood and perform their characterization. Develop an experimental method for studying ignition and combustion characteristics of pyrolysis liquid mixed with low-reactivity coal. Perform research on ignition delay times and the composition of released gas-phase products. Determine the main mechanisms of action of the components in the mixture of low-grade coal with pyrolysis liquid they’re during ignition and combustion. METHODS. The study was carried out using an experimental technique based on a high-temperature muffle furnace equipped with a high-speed video camera and a once-through gas analyzer. RESULTS. The article presents the dependences of the ignition delay times and the concentration curves of gas-phase products released during combustion of mixtures of low-grade coal and two types of pyrolysis liquid in the temperature range of the heating medium 600-800 °C and additive concentrations from 0 to 20 wt.%. Linear approximation dependences of ignition delay times on additive concentrations were obtained, and the mechanism of action of the additive during combustion was formulated. CONCLUSION. It was found that an increase in the concentration of the additive in the mixture leads to a stable decrease in the ignition delay times, while the amount of gas-phase products formed varied additively with respect to the composition of the mixture. The shape of the concentration curves for the release of CO and NOx indicates the independent action of the components of the mixture. The mechanism of action of additives was proposed. It was based on significant contribution of their evaporation process followed by combustion in the gas phase, which, in turn, initiats the ignition of coal.
混有热解液的劣质煤的点火和燃烧特征
这项研究的意义在于,需要将木材加工产生的热解液作为煤炭混合物的一部分,用于中、低功率锅炉的燃烧。由于此类混合物的点火和燃烧特性难以预测,而且缺乏计算方法,因此在研究这些过程时必须以实验方法为主。同时,为了在实践中广泛采用这种技术解决方案,有必要采用相对简单的方法来评估这些成分的点火和燃烧特性。目的从两种不同的木材中合成热解液样品,并对其进行表征。开发一种实验方法,研究热解液与低活性煤混合后的点火和燃烧特性。对点火延迟时间和释放的气相产物的成分进行研究。确定低级煤与热解液混合物中各成分在点火和燃烧过程中的主要作用机制。研究采用的实验技术基于高温马弗炉,并配备了高速摄像机和一次性气体分析仪。结果。文章介绍了在加热介质温度为 600-800 °C、添加剂浓度为 0-20 wt.%的条件下,低级煤和两种热解液混合物燃烧时的点火延迟时间和释放的气相产物浓度曲线的相关性。得到了点火延迟时间与添加剂浓度的线性近似关系,并提出了添加剂在燃烧过程中的作用机理。结论。研究发现,混合物中添加剂浓度的增加会导致点火延迟时间的稳定下降,而形成的气相产物量则随混合物成分的变化而变化。一氧化碳和氮氧化物释放浓度曲线的形状表明,混合物中各成分的作用是独立的。提出了添加剂的作用机理。它基于添加剂在气相燃烧后的蒸发过程中的重要作用,而气相燃烧又反过来引发煤的燃烧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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