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VERIFICATION OF ORIGIN OF THE MATERIAL OBTAINED FROM THERMAL BIOMASS CONVERSION - NEW METHODS

机译:热生物转化所得材料的来源验证-新方法

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This research presents the preliminary results of a comparison study of two methods that qualitativelyrnconfirm the origin of materials obtained from the thermal conversion of biomass. In light of the current rules, thernmaterials or fuels obtained in this process, biochars for instance, are not classified as biomass that can be used tornproduce green energy. Currently, these fuels can only be tested by analysing the 14C content. Unfortunately, thisrnmethod may not be sufficiently sensitive for materials that were obtained by the co-pyrolysis of biomass and wasternpolymers, as proven in this research. The current study resulted in the development of a classifier that allows for thernrapid and accurate control of fuels derived from biomass thermal conversion. The classifier was developed based onrnclassification and regression tree models, and it uses only the basic analytical data of the solid fuels referred to inrnmost laboratories. The data include elementary and technical analyses, the heat of combustion and the metal oxiderncontent in ash. The classifier yielded a classification accuracy of greater than 96%.
机译:这项研究提出了两种方法的比较研究的初步结果,这两种方法定性地确认了由生物质热转化获得的材料的来源。根据当前规则,在此过程中获得的材料或燃料(例如生物炭)未归类为可用于产生绿色能源的生物质。当前,只能通过分析14C含量来测试这些燃料。不幸的是,这种方法对于通过生物质和异质聚合物共热解获得的材料可能不够敏感。当前的研究导致了分类器的发展,该分类器允许对来自生物质热转化的燃料进行快速而准确的控制。分类器是基于分类树和回归树模型开发的,仅使用了被称为最实验室的固体燃料的基本分析数据。数据包括基础和技术分析,燃烧热和灰分中的金属氧化物含量。分类器得出的分类精度大于96%。

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