氧化气氛中褐煤、木质素及其混合物的热分析

IF 0.5 Q4 ENGINEERING, CHEMICAL
A. V. Zhuikov, A. I. Matiushenko, V. I. Panfilov, A. I. Avlasevich, S. G. Stepanov, P. N. Kuznetsov
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引用次数: 0

摘要

工业生物质废弃物的利用是当今的一个优先事项。一种很有前途的方法是用传统燃料燃烧生物质。在本工作中,研究了褐煤和木质素在缓慢加热下的燃烧。考虑含有25%、50%和75%木质素的混合物;粒度为100 ~ 200 μm。褐煤和木质素进行了技术和元素分析。在氧化介质(空气流速50 mL/min)下,以10°C/min加热,进行热分析。通过热分析,加热过程可分为三个阶段:去除水分和吸附和闭塞物质;热分解,随挥发分的排放和燃烧;以及碳渣的点火和燃烧。根据热分析结果确定了炭渣的基本燃烧参数:着火温度和燃烧温度;最大失重速率及相应温度;还有燃烧指数。结果表明,木质素炭渣的着火温度比褐煤低15%。因此,在褐煤中加入25%的木质素可以降低12%的燃点。分析了燃料组分之间相互作用对燃烧强度的影响。研究结果可用于改造燃煤锅炉以燃烧褐煤-生物质混合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermal Analysis of Lignite, Lignin, and Their Mixtures in an Oxidizing Atmosphere

Thermal Analysis of Lignite, Lignin, and Their Mixtures in an Oxidizing Atmosphere

The utilization of industrial biomass waste is a priority today. A promising approach is the combustion of biomass with traditional fuels. In the present work, the combustion of lignite and lignin is investigated, with slow heating. Mixtures containing 25, 50, and 75 wt % lignin are considered; the particle size is 100–200 μm. The lignite and lignin are subjected to technical and elemental analysis. Thermal analysis is employed in experiments with heating at 10°C/min an oxidative medium (air flow rate 50 mL/min). By thermal analysis, the heating process may be divided into three stages: removal of moisture and sorbed and occluded materials; thermal decomposition, with the emission and combustion of volatiles; and ignition and combustion of the carbon residue. The basic combustion parameters for the carbon residue are determined from the results of thermal analysis: the ignition and combustion temperatures; the maximum rate of mass loss and the corresponding temperature; and the combustion index. It is established that the ignition temperature of the carbon residue is 15% lower for lignin than for lignite. Therefore adding 25% lignin to lignite lowers the ignition point by 12%. The interaction of the fuel components that synergetically affect the combustion intensity is also analyzed. The results may be used in converting coal-fired boilers for the combustion of lignite–biomass mixtures.

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来源期刊
Coke and Chemistry
Coke and Chemistry ENGINEERING, CHEMICAL-
CiteScore
0.70
自引率
50.00%
发文量
36
期刊介绍: The journal publishes scientific developments and applications in the field of coal beneficiation and preparation for coking, coking processes, design of coking ovens and equipment, by-product recovery, automation of technological processes, ecology and economics. It also presents indispensable information on the scientific events devoted to thermal rectification, use of smokeless coal as an energy source, and manufacture of different liquid and solid chemical products.
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