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采用带集成主动和被动曝气系统的反应器实现城市废物稳定化。

Municipal waste stabilization in a reactor with an integrated active and passive aeration system.

机构信息

University of Warmia and Mazury in Olsztyn, Department of Environmental Biotechnology, Sloneczna, St 45 G, 10-709 Olsztyn, Poland.

出版信息

Waste Manag. 2016 Apr;50:31-8. doi: 10.1016/j.wasman.2016.02.012. Epub 2016 Feb 15.

Abstract

To test whether an integrated passive and active aeration system could be an effective solution for aerobic decomposition of municipal waste in technical conditions, a full-scale composting reactor was designed. The waste was actively aerated for 5d, passively aerated for 35 d, and then actively aerated for 5d, and the entire composting process was monitored. During the 45-day observation period, changes in the fractional, morphological and physico-chemical characteristics of the waste at the top of the reactor differed from those in the center of the reactor. The fractional and morphological analysis made during the entire process of stabilization, showed the total reduction of organic matter measured of 82 wt% and 86 wt% at the respective depths. The reduction of organic matter calculated using the results of Lost of Ignition (LOI) and Total Organic Carbon (TOC) showed, respectively, 40.51-46.62% organic matter loss at the top and 45.33-53.39% in the center of the reactor. At the end of the process, moisture content, LOI and TOC at the top were 3.29%, 6.10% and 4.13% higher, respectively, than in the center. The results showed that application of passive aeration in larger scale simultaneously allows the thermophilic levels to be maintained during municipal solid waste composting process while not inhibiting microbial activity in the reactor.

摘要

为了测试集成式被动和主动曝气系统是否可以成为技术条件下好氧分解城市废物的有效解决方案,设计了一个全规模堆肥反应器。废物被主动曝气 5d,被动曝气 35d,然后再主动曝气 5d,并对整个堆肥过程进行监测。在 45 天的观察期内,反应器顶部废物的分数、形态和物理化学特性的变化与反应器中心的废物不同。在整个稳定化过程中的分数和形态分析表明,在各自的深度处测量的有机物总减少量分别为 82wt%和 86wt%。使用灼烧损失(LOI)和总有机碳(TOC)的结果计算的有机物减少量分别为顶部的 40.51-46.62%和反应器中心的 45.33-53.39%。在过程结束时,顶部的水分含量、LOI 和 TOC 分别比中心高 3.29%、6.10%和 4.13%。结果表明,在更大规模上应用被动曝气同时允许在城市固体废物堆肥过程中保持嗜热水平,而不会抑制反应器中的微生物活性。

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