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Composting of dewatered wastewater sludge with various ratios of pruning waste used as a bulking agent and monitored by respirometer

机译:将各种比例的修剪废料用作填充剂并通过呼吸计监测脱水废水污泥的堆肥

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摘要

The effects of different volumetric ratios of wastewater sludge to bulking agent on the performance of full-scale composting were studied. Volumetric ratios of wastewater sludge to pruning waste, used as a bulking agent, were 1:2 (Pile 1), 1:2.5 (Pile 2) and 1:3 (Pile 3). Experiments were carried out in an uncovered plant using windrow composting with weekly turning. To monitor the evolution of the three composting piles, routine parameters such as temperature and interstitial oxygen level, chemical parameters such as organic matter, moisture and C/N ratio, and biologically related indices such as respiration indices at process temperature (RIprocess) and at 37 °C (RI₃₇) were monitored. Different responses were observed in the three piles; Pile 1 did not accomplish the necessary requirements in terms of sanitation and RIprocess for a typical composting process; Piles 2 and 3 presented a similar behaviour, reaching thermophilic temperatures for a long period and, due to their high biological activity, high RIprocess. The quality of the product obtained in the three piles in terms of stability (RI₃₇ and the Rottegrade self-heating test) and maturity (germination index) were measured, with compost from Pile 3 the most stable. To achieve satisfactory stability and sanitation for application to land, optimisation of the sludge to bulking agent ratio used to process wastewater sludge into compost appears to be crucial.
机译:研究了污泥与填充剂的不同体积比对全比例堆肥性能的影响。用作填充剂的废水污泥与修剪废物的体积比为1:2(桩1),1:2.5(桩2)和1:3(桩3)。实验是在没有覆盖的植物中进行的,使用堆肥堆肥并每周翻车。为了监控三个堆肥堆的演变过程,需要常规参数(例如温度和间隙氧水平),化学参数(例如有机物,水分和C / N比)以及生物学相关的指标(例如过程温度(RIprocess)和温度下的呼吸指数)监测到37℃(RI 3)。在三堆中观察到了不同的响应。对于典型的堆肥过程,第1堆未达到卫生和​​RI过程方面的必要要求;桩2和3表现出相似的行为,长期达到高温,并且由于其高生物活性和高RI过程。在稳定性(RI₃₇和Rottegrade自热测试)和成熟度(发芽指数)方面,测量了三个堆中获得的产品质量,其中来自第3堆的堆肥最为稳定。为了获得令人满意的用于土地的稳定性和卫生性,优化用于将废水污泥加工成堆肥的污泥与填充剂的比例似乎至关重要。

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    Ponsá Salas Sergio;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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