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Effective pine bark composting with the Dome Aeration Technology

机译:圆顶曝气技术可有效地堆肥松树皮

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摘要

In South Africa garden refuse is primarily disposed of in domestic landfills. Due to the large quantities generated, any form of treatment would be beneficial for volume reduction, waste stabilization and resource recovery. Dome Aeration Technology (DAT) is an advanced process for aerobic biological degradation of garden refuse and general waste [Paar, S., Brummack, J., Gemende, B., 1999a. Advantages of dome aeration in mechanical-biological waste treatment. In: Proceedings of the 7th International Waste Management and Landfill Symposium, Cagliari, 4-8 October 1999; Paar, S., Brummack, J., Gemende, B., 1999b. Mechanical-biological waste stabilization by the dome aeration method. Environment Protection Engineering 25 (3/99). Mollekopf, N., Brummack, J., Paar, S., Vor-ster, K., 2002. Use of the Dome Aeration Technology for biochemical stabilization of waste prior to landfilling. In: Proceedings of the Wastecon 2002, Waste Congress and Exhibition, Durban, South Africa.]. It is a non-reactor open windrow composting process, with the main advantage being that the input material needs no periodic turning. A rotting time of only 3-4 months indicates the high efficiency. Additionally, the low capital/operational costs, low energy inputs and limited plant requirements provide potential for use in aerobic refuse stabilization. The innovation in the DAT process is the passive aeration achieved by thermally driven advection through open windrows caused by temperature differences between the degrading material and the outside environment. This paper investigates the application of Dome Aeration Technology to pine bark composting as part of an integrated waste management strategy. A full-scale field experiment was performed at the Bisasar Road Landfill Site in Durban to assess the influence of climate, waste composition and operational conditions on the process. A test windrow was constructed and measurements of temperature and airflow through the material were taken. The process monitoring revealed that prevailing climatic conditions in a subtropical location do not affect the high efficiency of this technology. However, the composition of the input material can be detrimental for production of high quality compost because of a lack of nitrate.
机译:在南非,花园垃圾主要在生活垃圾填埋场处置。由于产生的大量废物,任何形式的处理都将有助于减少体积,废物稳定和资源回收。圆顶曝气技术(DAT)是一种用于对花园垃圾和一般废物进行有氧生物降解的高级工艺[Paar,S.,Brummack,J.,Gemende,B.,1999a。圆顶曝气在机械生物废物处理中的优势。见:1999年10月4日至8日在卡利亚里举行的第七届国际废物管理和填埋场研讨会论文集; Paar,S.,Brummack,J.,Gemende,B.,1999b。通过圆顶曝气方法实现机械-生物废物的稳定化。环境保护工程25(3/99)。 Mollekopf,N.,Brummack,J.,Paar,S.,Vor-ster,K.,2002。将圆顶曝气技术用于垃圾填埋前的生化稳定化处理。见:Wastecon会议录,2002年,废物大会和展览,南非德班。]。这是一种非反应堆露天堆肥工艺,主要优点是投入物料无需定期翻转。腐烂时间只有3-4个月,说明效率很高。另外,低的资本/运营成本,低的能源投入和有限的工厂要求提供了用于需氧垃圾稳定的潜力。 DAT工艺的创新之处在于,通过降解材料与外界环境之间的温差导致的热风通过敞开的横排实现平流,从而实现了被动曝气。本文研究了圆顶曝气技术在松树皮堆肥中的应用,作为综合废物管理策略的一部分。在德班的Bisasar Road垃圾填埋场进行了一次大规模的现场试验,以评估气候,废物成分和操作条件对该过程的影响。构造了一个测试料堆,并测量了通过该材料的温度和气流。过程监控表明,亚热带地区的主要气候条件不会影响该技术的高效率。然而,由于缺乏硝酸盐,输入物料的组成可能不利于生产高质量的堆肥。

著录项

  • 来源
    《Waste Management》 |2007年第1期|p.96-105|共10页
  • 作者单位

    CRECHE Centre for Research in Environmental, Coastal and Hydrological Engineering, School of Civil Engineering, Survey and Construction University of KwaZulu-Natal, Durban 4041, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 废物处理与综合利用;
  • 关键词

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