通过HTC和厌氧消化的眼镜生物塑料的增值:初步结果

IF 1.2 Q4 ENGINEERING, ENVIRONMENTAL Detritus Pub Date : 2023-06-30 DOI:10.31025/2611-4135/2023.18275
Filippo Marchelli, R. Ferrentino, G. Ischia, Marco Calvi, G. Andreottola, L. Fiori
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引用次数: 0

摘要

生物塑料在许多领域日益取代传统塑料,但其处置的立法和操作框架仍不明确:它们应与城市固体废物(OFMSW)的有机部分一起收集和处理,但在处理OFMSW的工厂中往往不能令人满意地进行生物降解。这项工作的重点是一种类型的二醋酸纤维素用于眼镜工业分析水热碳化(HTC)作为厌氧消化(AD)前的预处理。结果表明,HTC甚至可以在中等温度下水解这种生物塑料,在210℃时几乎完全溶解在液相中,在更高的温度下,产生碳氢化合物。当在210°C下获得的HTC浆料被喂给中温或嗜热AD时,与原料生物塑料相比,沼气的数量和生产速度都得到了提高。特别是,在嗜热条件下,与未经处理的二乙酸纤维素相比,产生的沼气量至少增加了三倍。因此,这项工作证实,先前的HTC步骤可能是通过AD增强生物塑料的处理和能量回收的合适方法。
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Valorisation of eyewear bioplastics through HTC and anaerobic digestion: Preliminary results
Bioplastics are increasingly replacing traditional plastics in many sectors, but the legislative and operative frameworks for their disposal remain unclear: they should be collected and treated together with the organic fraction of municipal solid waste (OFMSW), but often do not biodegrade satisfactorily in the plants that treat OFMSW. This work focuses on a type of cellulose diacetate employed in the eyewear industry to analyse hydrothermal carbonization (HTC) as a pre-treatment before anaerobic digestion (AD). The results show that HTC can hydrolyse this bioplastic even at moderate temperatures, reaching an almost total dissolution in the liquid phase at 210 °C and, at higher temperatures, producing hydrochar. When the HTC slurry obtained at 210 °C is fed to mesophilic or thermophilic AD, both the amount and the production rate of biogas are enhanced compared to the raw bioplastic. In particular, in thermophilic conditions, the amount of produced biogas undergoes at least a threefold increase compared to the untreated cellulose diacetate. Thus, this work confirms that a prior HTC step may be a suitable approach to enhance the disposal and energy recovery of bioplastics through AD.
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来源期刊
Detritus
Detritus ENGINEERING, ENVIRONMENTAL-
CiteScore
3.30
自引率
23.50%
发文量
45
审稿时长
15 weeks
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