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Study on the Similarity of the Parameters of Biomass and Solid Waste Fuel Combustion for the Needs of Thermal Power Engineering

机译:生物质和固体废料燃料燃烧参数相似性研究热电工程需求

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摘要

The topic raised in this paper concerns an important aspect regarding the possibilities of the combustion and co-combustion of biomass substrates (energetic willow/sewage sludge), in light of the renewable energy source (RES) regulations, with fuel from waste defined here as RDF. Particular interest in these fuels and their mixtures results from a search by the thermal power engineering sector for fuels whose combustion will be associated with benefits, e.g., the acquisition of energy origin licenses, availability and lower cost of obtaining fuel (RDF), as well as moderate investment contributions using the existing base of coal grate boilers. This article indicates the possible variants of the combustion and co-combustion of the abovementioned fuels, referring to the use of technical and technological capabilities of coal grate furnaces. It was possible by comparing the mechanical and thermal load of grates, as well as so-called indicators for the quantitative assessment of combustion (i.e., ignition rate and mass loss rate). The result of the combustion of the fuel as above in a laboratory-scale furnace (samples weighing up to 1 kg), as well as their thermogravimetric analysis, indicates a great similarity of the mass loss curve, temperature profiles and combustion phases, as well as indicators of a quantitative assessment in the process of biomass and RDF oxidation. The obtained results of the mechanical and thermal load capacity of the grates constitute the basis for further analyses of fuel conversion, without the risk of thermal and/or mechanical grate overload. Relying on the research of the indicators for the quantitative assessment of combustion, it was found that the combustion process of the tested fuels could be carried out while maintaining the quality of burning the fuel layer. Based on the conducted research, it can be assumed that it is possible to replace coal fuels with biomass, RDF fuel, sewage sludge using coal furnaces for their combustion, which means a hybrid nature of the furnace due to the type of fuel.
机译:本文提出的主题涉及鉴于生物质基材(活性柳/污水污泥)的燃烧和共燃烧的可能性的重要方面,鉴于可再生能源(RES)法规,燃料来自这里定义的废物RDF。对这些燃料的特别兴趣及其混合物由热电工程部门的搜索结果来燃烧,其燃烧将与益处相关,例如获取能源来源许可证,可用性和获得燃料(RDF)的较低成本使用现有的煤炉锅炉底座适度的投资贡献。本文表明了上述燃料的燃烧和共燃烧的可能变化,参考了煤炉炉的技术和技术能力。通过比较炉排的机械和热负荷,以及所谓的燃烧定量评估的所谓指标(即点火率和质量损失)。如上所述在实验室级炉中燃烧燃料的结果(称重高达1千克的样品)以及其热重分析,表明了质量损失曲线,温度曲线和燃烧阶段的良好相似性作为生物质和RDF氧化过程中定量评估的指标。所获得的炉排机械和热负荷能力的结果构成进一步分析燃料转换的基础,而不会产生热和/或机械炉排过载的风险。依赖于对燃烧定量评估的指标的研究,发现可以在保持燃烧燃料层的质量的同时进行测试燃料的燃烧过程。基于进行的研究,可以假设使用生物量,RDF燃料,使用煤炉的燃烧,可以用生物质,RDF燃料,污水污泥代替煤燃料,这意味着由于燃料的类型而腐烂的炉子的混合性质。

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