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混合城市固体废物湿组分的水热碳化:水炭特性和能量平衡。

Hydrothermal carbonization of the wet fraction from mixed municipal solid waste: Hydrochar characteristics and energy balance.

机构信息

AGH University of Science and Technology, Mickiewicza 30 Av., 30-059 Krakow, Poland.

University of Florence, via Santa Marta 3, Firenze 50139, Italy.

出版信息

Waste Manag. 2022 Sep;151:39-48. doi: 10.1016/j.wasman.2022.07.029. Epub 2022 Aug 1.

DOI:10.1016/j.wasman.2022.07.029
PMID:35926280
Abstract

Mixed municipal solid waste (MSW) may be pre-treated in a mechanical-biological treatment (MBT) plant to produce an exiting stream with improved combustible characteristics. The process also produces a second waste stream, which is generally separated on a size basis by industrial sieving equipment. It contains fractions with a high moisture content such as residual food waste, soiled paper and cardboard, and small fragments of other materials. Samples of this stream, collected at an existing plant, were characterized and processed by hydrothermal carbonization (HTC) at laboratory scale, at various temperatures (180, 200 and 220 °C), reaction times (1, 4 and 8 h) and solid to water ratios (0.15 and 0.07). The primary energy balance, on a hypothetical industrial scale, was performed. In brief, the results confirmed that the produced hydrochar was a brittle, hydrophobic, solid carbonaceous product which gave a better combustion performance as the residence time of the HTC process was increased. Moreover, the dewaterability of the carbonized waste was greatly improved when compared to raw, wet samples. The results of the primary energy balance confirmed that the energy contained in the produced hydrochar was higher than the energy consumption for the process itself, under all the HTC working conditions. The energy consumed in the process was in the range of 40-70 % of the energy content of the produced hydrochar.

摘要

混合城市固体废物(MSW)可在机械-生物处理(MBT)工厂中进行预处理,以产生具有改善的可燃特性的流出物。该过程还产生第二废物流,该废物流通常通过工业筛分设备按尺寸进行分离。它包含高水分含量的部分,如残余食物废物、脏纸和纸板以及其他材料的小碎片。在现有工厂收集的该流的样品在实验室规模下通过水热碳化(HTC)进行了特性描述和处理,温度分别为 180、200 和 220°C,反应时间分别为 1、4 和 8 小时,固液比分别为 0.15 和 0.07。在假设的工业规模上进行了主要的能量平衡。简而言之,结果证实,所生产的水炭是一种脆性、疏水性的固体碳质产物,随着 HTC 过程的停留时间的增加,其燃烧性能更好。此外,与原始的湿样品相比,碳化废物的脱水性能得到了极大的改善。主要能量平衡的结果证实,在所研究的所有 HTC 工作条件下,生产的水炭中所含的能量都高于该过程本身的能耗。该过程消耗的能量在水炭产量的能量含量的 40-70%之间。

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