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Biomass ash reutilisation as an additive in the composting process of organic fraction of municipal solid waste

机译:生物质灰分再利用作为城市固体废物有机部分堆肥过程中的添加剂

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摘要

In this work the effects of selected types of biomass ash on the composting process and final product quality were studied by conducting a 96-day long experiment where the source separated organic fraction of municipal waste, mixed with wood prunings that served as bulking agent, was added with 0%, 2%, 4% and 8% wt/wt of biomass ash. The evolution over time of the main process parameters was observed, and the final composts were characterised. On the basis of the results, both the composting process and the quality of the final product were improved by ash addition. Enhanced volatile solids reduction and biological stability (up to 32% and 52%, respectively, as compared to the unamended product) were attained when ash was added, since ash favored the aerobic degradation by acting as a physical conditioner. In the final products, higher humification of organic matter (expressed in terms of the humification index, that was 2.25 times higher in the most-enriched compost than in the unamended one) and total Ca, K, Mg and P content were observed when ash was used. The latter aspect may influence the composts marketability positively, particularly with regards to potassium and phosphorus. The heavy metals content, that is regarded as the main environmental disadvantage when using ash as a composting additive, did not negatively affect the final composts quality. However, some other controversial effects of ash, related to the moisture and temperature values attained during the process, pH (8.8-9.2 as compared to 8.2 of the unamended compost) and electrical conductivity levels (up to 53% higher as compared to the unamended compost) in the final composts, were also observed.
机译:在这项工作中,通过进行为期96天的实验研究了选定类型的生物质灰分对堆肥过程和最终产品质量的影响,其中源分离了城市垃圾的有机部分,并混合了用作增量剂的木枝。添加了0%,2%,4%和8%wt / wt的生物质灰分。观察了主要工艺参数随时间的变化,并对最终堆肥进行了表征。根据结果​​,通过添加灰分可以改善堆肥过程和最终产品的质量。当添加灰分时,提高了挥发性固体的还原性和生物稳定性(与未改性产品相比分别高达32%和52%),因为灰分通过充当物理调节剂而促进了好氧降解。在最终产品中,有机物的增湿程度更高(以增湿指数表示,最富集的堆肥的有机物含量比未改良的堆肥高2.25倍),并且在灰分中观察到总的Ca,K,Mg和P含量被使用了。后者可能对堆肥的适销性产生积极影响,特别是在钾和磷方面。重金属含量在使用灰作为堆肥添加剂时被认为是主要的环境不利因素,不会对最终堆肥质量产生负面影响。然而,灰分的其他一些有争议的影响与过程中获得的水分和温度值,pH值(8.8-9.2,与未修正堆肥的8.2相比)和电导率水平(与未修正的堆肥相比,高达53%)有关最终堆肥中也观察到了堆肥。

著录项

  • 来源
    《Waste Management 》 |2017年第11期| 127-135| 共9页
  • 作者单位

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy;

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy,IGAG-CNR, Environmental Geology and Geoengineering Institute of the National Research Council, Piazza D'Armi 1, Italy;

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy,IGAG-CNR, Environmental Geology and Geoengineering Institute of the National Research Council, Piazza D'Armi 1, Italy;

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy,IGAG-CNR, Environmental Geology and Geoengineering Institute of the National Research Council, Piazza D'Armi 1, Italy;

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy;

    DICAAR, Department of Civil and Environmental Engineering and Architecture, University of Cagliari, Piazza D'Armi 1, Italy;

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

    Additive; Biomass ash; Composting; Municipal solid waste; Organic waste;

    机译:添加剂;生物质灰堆肥;城市生活垃圾;有机废物;

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