巴西南部某垃圾填埋场Isw垃圾衍生燃料的物理化学特性研究

Q4 Environmental Science Journal of Solid Waste Technology and Management Pub Date : 2022-05-01 DOI:10.5276/jswtm/2022.270
Tamely Cristine Floriani, L. Chiarello, T. Porto, V. Wiggers
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引用次数: 0

摘要

回收废物中能量含量的一个挑战是其异质性。从垃圾衍生燃料(RDF)中生产能源,热过程是较好的选择。焚烧是最常用的技术;气化和热解也在作为替代方案进行研究。在巴西,残留物被分类为城市固体废物(MSW)和工业固体废物(ISW),并有不同的管理规则,并进入不同的垃圾填埋场。要定义能量回收的热化学转化过程,了解RDF性质是至关重要的。RDF的物理和化学性质随其组成而变化,这是一个复杂的变量。这项工作的目的是进行表征,以确定在巴西南部的工业垃圾填埋场收到的ISW的组成、物理和化学性质。对二次粉碎后的样品进行水分、总固形物、固定固形物和挥发性固形物、闪点、容重、低热值、高热值的测定。碳、氢、氮、硫、氯、金属、非金属和半金属、挥发性有机化合物对三级粉碎后的样品进行分析。结果表明:水分、低热值和容重的平均值分别为16.08±4.03、17.16±4.69 MJ/kg和340±3.00 kg/m3。根据坦纳图,所有来自ISW的RDF都表明无需额外燃料即可燃烧的可能性。重点:对不同的工业固体废物(ISW)样品进行了调查;测定了ISW样品的定量和定性组成;ISW样品在分析前切碎并分成四等分;评估水分、近似分析、HHV、CHNOS和VOC。
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Physical and Chemical Characterization of a Refuse Derived Fuel from an Isw in a Landfill Located of Southern Brazil
One challenge to recover the energy content in wastes is the heterogeneity. The thermal processes are being preferable choices to produce energy from the refuse derived fuel (RDF). Incineration is the technique most used; gasification and pyrolysis are also being studied as alternatives. In Brazil, the residues are classified as municipal solid waste (MSW) and industrial solid wastes (ISW) and present different management rules and goes to different landfills. To define thermochemical conversion processes for energy recovery it is crucial the knowledge of RDF properties. The physical and chemical properties of the RDF vary with the composition and it is a complex variable to deal. This work aims to perform a characterization to determine the composition, physical and chemical properties of the ISW received in an industrial landfill of southern Brazil. Moisture, total solids, fixed solids and volatile solids, flash point, bulk density, low heating values, high heating values were performed with the sample after secondary shredding. While carbon, hydrogen, nitrogen, sulfur, chlorine, metals, nonmetals and semimetals, volatile organic compounds were carried out with the samples obtained after tertiary shredding. The results show moisture, low heating value and bulk density have an average of 16.08±4.03, 17.16±4.69 MJ/kg, and 340±3.00 kg/m3, respectively. All RDF from ISW studied indicates the possibility of combustion without additional fuel according to Tanner diagram. Highlights: Different samples of industrial solid wastes (ISW) were investigated; Quantitative and qualitative composition of ISW sample was determined; Samples of ISW were shredded and quartered before analysis; Moisture, proximate analysis, HHV, CHNOS and VOC were evaluated.
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来源期刊
Journal of Solid Waste Technology and Management
Journal of Solid Waste Technology and Management Environmental Science-Waste Management and Disposal
CiteScore
0.60
自引率
0.00%
发文量
30
期刊介绍: The Journal of Solid Waste Technology and Management is an international peer-reviewed journal covering landfill, recycling, waste-to-energy, waste reduction, policy and economics, composting, waste collection and transfer, municipal waste, industrial waste, residual waste and other waste management and technology subjects. The Journal is published quarterly (February, May, August, November) by the Widener University School of Engineering. It is supported by a distinguished international editorial board.
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