城市固体废物(MSW) -获得可燃材料的竞争性原料

A. Serbanescu, M. Barbu, I. Cristea, Lidia Kim, G. Catrina, Georgiana Cernica, I. Nicolescu
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摘要

废物发电项目可归类为从不可回收的城市废物部分中回收能源的补充技术,因此不应与减少、再利用和回收材料的措施竞争。本文介绍了一些处理过的城市生活垃圾作为获取可燃材料的竞争原料的特点。分析了具有木质纤维素和聚合物成分的样品,即作为水泥厂二次原料的SRFs(固体回收燃料)样品,SRF1, SRF2, SRF3;由家庭垃圾组成的RDF样本;在水泥厂中用作二次原料的绒毛样品(一种非危险废物的均匀混合物——经过选择、机械处理和干燥);4份小于100毫米的城市固体废物样品,经过生物干燥过程,成分:纸和纸板(70-80%),木材(6-15%),塑料(6-10%),玻璃和金属(3-14%),MBU1, MBU2, MBU3, MBU4。从技术和基本特征以及燃烧过程中的灰分(由样品焚烧获得)行为方面对废物样品进行了表征。采用Rigaku CG x射线荧光光谱仪对矿物进行了x射线荧光分析。通过对结渣和结渣风险评价指标的分析,发现所分析样品由于碱性氧化物和氧化硅含量高,存在明显的熔体形成和结渣风险。
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Municipal solid waste (MSW) - competitive raw materials for combustible materials obtaining
Waste-to-energy projects can be classified as a complementary technology for energy recovery from nonrecyclable municipal waste fractions and should therefore not compete with measures to reduce, reuse, and recycle materials. The article presents the characterization of some treated municipal solid wastes as competitive raw materials for combustible materials obtaining. Samples with lignocellulosic and polymeric composition were analyzed, namely 3 samples of SRFs (solid recovered fuels) used as secondary raw material in cement plants, SRF1, SRF2, SRF3; a sample of RDF, consisting of household waste; a sample of fluff (a homogeneous mixture of non-hazardous waste - selected, mechanically treated and dried) used as a secondary raw material in cement plants; 4 samples of municipal solid waste, fractions smaller than 100 mm, after a bio-drying process, with composition: paper and cardboard (70-80%), wood (6-15%), plastic (6-10%), glass and metal (3-14%), MBU1, MBU2, MBU3, MBU4. The waste samples were characterized in terms of technical and elementary characteristics and the ash (obtained by the sample incineration) behavior in the combustion process. The mineral matter was investigated by the X-ray fluorescence analytical technique using the Rigaku CG X-ray Spectrofluorimeter. The analysis of the indices used for the slagging and deposit formation risks evaluation shows that the analyzed samples present an obvious risk of melt formation and deposits, due to a high content of base oxides and silicon oxide.
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