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A complete mass balance of a complex combined anaerobic/aerobic municipal source-separated waste treatment plant

机译:复杂的厌氧/好氧市政源分离废物处理厂综合质量平衡

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摘要

In this study a combined anaerobic/aerobic full-scale treatment plant designed for the treatment of the source-separated organic fraction of municipal solid waste (OFMSW) was monitored over a period of one year. During this period, full information was collected about the waste input material, the biogas production, the main rejects and the compost characteristics. The plant includes mechanical pre-treatment, dry thermophilic anaerobic digestion, tunnel composting system and a curing phase to produce compost. To perform the monitoring of the entire plant and the individual steps, traditional chemical methods were used but they present important limitations in determining the critical points and the efficiency of the stabilization of the organic matter. Respiration indices (dynamic and cumulative) allowed for the quantitative calculation of the efficiency of each treatment unit. The mass balance was calculated and expressed in terms of Mg y~(-1) of wet (total) matter, carbon, nitrogen and phosphorus. Results show that during the pre-treatment step about 32% of the initial wet matter is rejected without any treatment. This also reduces the biodegradability of the organic matter that continues to the treatment process. About 50% of the initial nitrogen and 86.4% of the initial phosphorus are found in the final compost. The final compost also achieves a high level of stabilization with a dynamic respiration index of 0.3 ± 0.1 g O_2 per kg of total solids per hour, which implies a reduction of 93% from that of the raw OFMSW, without considering the losses of biodegradable organic matter in the refuse (32% of the total input). The anaerobic digestion process is the main contributor to this stabilization.
机译:在这项研究中,设计了一套厌氧/好氧综合规模处理厂,用于处理城市固体废物的源头分离有机物(OFMSW),为期一年。在此期间,收集了有关废物输入材料,沼气生产,主要废弃物和堆肥特性的全部信息。该工厂包括机械预处理,干热厌氧消化,隧道堆肥系统和产生堆肥的固化阶段。为了对整个工厂和各个步骤进行监视,使用了传统的化学方法,但是它们在确定临界点和稳定有机物的效率方面存在重要的局限性。呼吸指数(动态和累积)允许对每个处理单元的效率进行定量计算。计算质量平衡并以湿(总)物质的Mg y〜(-1),碳,氮和磷表示。结果表明,在预处理步骤中,约有32%的初始湿物质未经任何处理就被排除了。这也降低了继续进行处理过程的有机物的生物降解性。在最终堆肥中发现约50%的初始氮和86.4%的初始磷。最终的堆肥还实现了高水平的稳定化,动态呼吸指数为每小时每千克总固体0.3±0.1 g O_2,这意味着与原始OFMSW相比减少了93%,而无需考虑可生物降解有机物的损失垃圾中的废物(占总投入的32%)。厌氧消化过程是这种稳定的主要因素。

著录项

  • 来源
    《Waste Management》 |2012年第5期|p.799-805|共7页
  • 作者单位

    Composting Research Croup, Department of Chemical Engineering, Escola d'Enginyeria, Universitat Autonoma de Barcelona, Bellaterra, Cerdanyola del Valles, 08193 Barcelona, Spain;

    Composting Research Croup, Department of Chemical Engineering, Escola d'Enginyeria, Universitat Autonoma de Barcelona, Bellaterra, Cerdanyola del Valles, 08193 Barcelona, Spain;

    Composting Research Croup, Department of Chemical Engineering, Escola d'Enginyeria, Universitat Autonoma de Barcelona, Bellaterra, Cerdanyola del Valles, 08193 Barcelona, Spain;

    Composting Research Croup, Department of Chemical Engineering, Escola d'Enginyeria, Universitat Autonoma de Barcelona, Bellaterra, Cerdanyola del Valles, 08193 Barcelona, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    waste treatment plant; municipal waste; waste source-separation; mass balance; nitrogen; phosphorus; stability;

    机译:废物处理厂;市政废物;废物源分离;质量平衡;氮;磷;稳定性;

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