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生物组分和垃圾衍生燃料的基础干燥和团聚实验,用于开发热解反应器进料。

Fundamental drying and agglomeration experiments with bio-fraction and refuse derived fuel for the development of pyrolysis reactor feed.

机构信息

Institute of Raw Materials Preparation and Environmental Technology, University of Miskolc, Miskolc, Hungary.

出版信息

Waste Manag Res. 2024 Sep;42(9):715-725. doi: 10.1177/0734242X241237195. Epub 2024 Mar 19.

Abstract

The EU's circular economy concept necessitates increasing the recycling ratio of municipal solid wastes. There are many existing mechanical-biological processing plants in Hungary for the preparation of residual municipal solid wastes (RMSWs). The two most important products of these plants are the bio-fraction and the refuse derived fuel (RDF). Currently, there are problems with both of these material streams in Hungary, since most of the bio-fraction is still landfilled, and the local thermal utilisation of the RDF has not been implemented yet. The high moisture content of the produced bio-fraction and RDF causes difficulties for the downstream operations; therefore, there is recent engineering interest in drying and agglomeration of these materials. The authors have carried out systematic and parallel drying and briquetting experimental series to study the effect of the material, material composition, mass (volume or surface) of the material, particle size distribution and pre-treatment with a cutting mill on drying intensity in a 1 m oven and their effect on briquettability by a laboratory briquette press. The initial slope of the relative moisture loss as function of time was determined. Process engineering design methods of convective hot air-drying can be further developed taking into account the research results. Results can be used for the design of the feed of a pyrolysis reactor once reactor experiments have provided the optimal feed requirements.

摘要

欧盟的循环经济理念需要提高城市固体废物的回收利用率。匈牙利有许多现有的机械-生物处理厂来准备残余城市固体废物(RMSWs)。这些工厂的两个最重要的产品是生物部分和垃圾衍生燃料(RDF)。目前,这两种材料流在匈牙利都存在问题,因为大部分生物部分仍被填埋,而 RDF 的当地热利用尚未实施。产生的生物部分和 RDF 的高含水量给下游操作带来了困难;因此,最近工程界对这些材料的干燥和制粒产生了兴趣。作者进行了系统和并行的干燥和压块实验系列,以研究材料、材料组成、材料的质量(体积或表面)、粒度分布以及用切割磨机进行预处理对 1 m 烘箱中干燥强度的影响,以及它们对实验室压块机压块性的影响。确定了相对失水量随时间的初始斜率。考虑到研究结果,可以进一步开发对流热空气干燥的过程工程设计方法。一旦反应实验提供了最佳的进料要求,这些结果就可以用于热解反应器的进料设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/100d/11373162/4150cd197a59/10.1177_0734242X241237195-fig1.jpg

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