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Organic fraction of municipal solid waste from mechanical selection: biological stabilization and recovery options

机译:机械选择产生的城市固体废物的有机部分:生物稳定和回收选项

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Although current trends address towards prevention strategies, the organic fraction of municipal solid waste is greatly produced, especially in high-income contexts. Its recovery-oriented collection is a common practice, but a relevant portion of the biodegradable waste is not source selected. Mechanical and biological treatments (MBT) are the most common option to sort and stabilize the biodegradable matter ending in residual waste stream. Following the changes of the framework around waste management, this paper aimed at analyzing the quality of the mechanically selected organic waste produced in MBT plants, in order to discuss its recovery options. The material performance was obtained by its composition as well as by its main chemical and physical parameters; biological stability was also assessed by both aerobic and anaerobic methods. On this basis, the effectiveness of an aerobic biostabilization process was assessed at pilot scale. After 21 days of treatment, results proved that the biomass had reached an acceptable biostabilization level, with a potential Dynamic Respirometric Index (DRIP) value lower than the limit required for its use as daily or final landfill cover material. However, the final stabilization level was seen to be influenced by scaling factors and the 21 days of treatment turned to be not so adequate when applied in the existing full-scale facility.
机译:尽管当前的趋势涉及预防策略,但城市固体废物的有机部分却大量产生,特别是在高收入情况下。以回收为导向的收集是一种常见做法,但是未选择可生物降解废物的相关部分。机械和生物处理(MBT)是分类和稳定最终残留废物流中可生物降解物质的最常见选择。随着废物管理框架的变化,本文旨在分析MBT工厂中机械选择的有机废物的质量,以讨论其回收方案。材料性能是通过其组成以及主要的化学和物理参数获得的。还通过需氧和厌氧方法评估了生物稳定性。在此基础上,以中试规模评估了有氧生物稳定过程的有效性。经过21天的处理,结果证明生物质已达到可接受的生物稳定水平,潜在的动态呼吸指数(DRIP)值低于其用作每日或最终垃圾掩埋覆盖物所需的极限。但是,最终的稳定水平受到缩放因子的影响,而在现有的全面规模的设施中使用21天的治疗变得不够。

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