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首页> 外文期刊>Waste Management >Influence assessment of a lab-scale ripening process on the quality of mechanically-biologically treated MSW for possible recovery
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Influence assessment of a lab-scale ripening process on the quality of mechanically-biologically treated MSW for possible recovery

机译:实验室规模的成熟过程对经过机械生物处理的城市固体垃圾质量的影响评估,以求可能的回收率

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摘要

In this study, the influence of an additional ripening process on the quality of mechanically-biologically treated MSW was evaluated in the prospective of recovering the end material, rather than landfilling. The biostabilised waste (BSW) coming from one of the MBT plants of Rome was therefore subjected to a ripening process in slightly aerated lab test cells. An in-depth investigation on the biological reactivity was performed by means of different types of tests (aerobic and anaerobic biological tests, as well as FT-IR spectroscopy method). A physical-chemical characterisation of waste samples progressively taken during the ripening phase was carried out, as well. In addition, the ripened BSW quality was assessed by comparing the characteristics of a compost sampled at the composting plant of Rome which treat source segregated organic wastes. Results showed that the additional ripening process allowed to obtain a better quality of the biostabilised waste, by achieving a much higher biological stability compared to BSW as-received and similar to that of the tested compost. An important finding was the lower heavy metals (Co, Cr, Cu, Ni, Pb and Zn) release in water phase at the end of the ripening compared to the as-received BSW, showing that metals were mainly bound to solid organic matter. As a result, the ripened waste, though not usable in agriculture as found for the compost sample, proved anyhow to be potentially suitable for land reclamation purposes, such as in landfills as cover material or mixed with degraded and contaminated soil for organic matter and nutrients supply and for metals recovery, respectively. In conclusion the study highlights the need to extend and optimise the biological treatment in the MBT facilities and opens the possibility to recover the output waste instead of landfilling.
机译:在这项研究中,评估了额外的成熟过程对经过机械生物处理的城市固体废弃物质量的影响,以期回收最终材料,而不是填埋。因此,来自罗马MBT工厂之一的生物稳定废物(BSW)在微曝气的实验室测试室中进行了成熟过程。通过不同类型的测试(需氧和厌氧生物学测试以及FT-IR光谱法)对生物学反应性进行了深入研究。还在成熟阶段逐步进行了废物样品的物理化学表征。另外,通过比较在罗马堆肥厂取样的堆肥的特性来评估成熟的BSW品质,该堆肥厂处理源头分离的有机废物。结果表明,与所接收的BSW相比,与所测试堆肥的生物安全性相比,通过实现更高的生物稳定性,额外的成熟过程能够获得更高质量的生物稳定废物。一个重要的发现是,与按预期的BSW相比,成熟结束时水相中较低的重金属(Co,Cr,Cu,Ni,Pb和Zn)释放,表明金属主要与固体有机物结合。结果,成熟的废物尽管不能像堆肥样品那样在农业中使用,但无论如何仍被证明可能适合土地开垦,例如在填埋场中作为掩盖材料或与降解和污染的土壤混合以获取有机物和养分供应和金属回收。总之,该研究强调了在MBT设施中扩展和优化生物处理的必要性,并为回收产出废物而不是填埋提供了可能性。

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