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Analysis of the Effect of the Biomass Torrefaction Process on Selected Parameters of Dust Explosivity

机译:生物质烘焙过程对粉尘爆炸性选定参数的影响分析

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摘要

This article presents the findings of a study investigating the explosion and combustion parameters of dust from the raw biomass of wheat straw and energy willow and from the products of biomass torrefaction generated at temperatures ranging from 220 to 300 °C. Agricultural waste and energy crops and their modifications, e.g., in the torrefaction process, did not find a place in explosive risk research, which the authors decided to present in their work. The study was designed to estimate explosion hazard during the processing of the materials into fuels and during the storage process. The measurements recorded a maximum explosion pressure P in the case of dust from biomass ranging from 7.2 to 7.3 bar and for dust from torrefied materials amounting to 7.5–9.2 bar, and a maximum rate of pressure rise over time ( ) in raw biomass ranging from 201.4 to 261.3 bar/s and in torrefied materials amounting to 209.6–296.6 bar/s. The estimated explosion index for raw biomass was 55–72 m*bar/s and for torrefied materials was in the range from 57 to 81 m*bar/s. In the results, the authors present values for specific types of fuel which differ significantly depending on the type of biomass. The research findings show that the torrefaction process used in fuel production is not associated with a significantly greater risk of explosion and the materials obtained may safely be used as an alternative to conventional solid fuels. Given the growing interest in the use of biomass and in the variety of biomass processing methods for energy-related purposes, it seems there is a need for research to develop appropriate guidelines and for effective practices to be introduced in the energy industry in order to ensure the safety of the processes used in the production of novel fuels especially in small installations converting these materials into more efficient energy material.
机译:本文提出了研究调查粉尘粉尘爆炸和燃烧参数的研究结果,从麦秸秆和能量柳中的原料生物量以及在220至300℃的温度下产生的生物质烘焙产品。农业废物和能源作物及其修改,例如,在烘焙过程中没有找到爆炸性风险研究的地方,作者决定介绍在他们的工作中。该研究旨在估算材料在燃料和储存过程中加工过程中的爆炸危险。测量在从7.2至7.3巴的生物质的灰尘的情况下记录了最大爆炸压力P,并且从烘焙材料的灰尘量为7.5-9.2巴,并且在原始生物量的时间()随时间()的最大压力升高速率201.4至261.3栏和托雷菲材料,金额为209.6-296.6条。估计的爆炸指数 对于原料生物量为55-72 m *浆料,并且对于烘焙材料的范围为57至81 m * bar / s。在结果中,作者对特定类型的燃料提供了值,这取决于生物质的类型。研究结果表明,燃料生产中使用的烘焙过程与爆炸风险明显更大,并且可以安全地用作常规固体燃料的替代物。鉴于使用生物量的使用越来越令人兴趣,并且在与能源相关目的的各种生物量处理方法中,似乎需要研究,以制定适当的准则和在能源行业中引入的有效实践,以确保在新型燃料生产中使用的过程的安全性,特别是在小型安装中将这些材料转化为更有效的能量材料。

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