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意大利托斯卡纳地区全尺寸污泥固结芦苇床的水力与生化分析

Hydraulic and biochemical analyses on full-scale sludge consolidation reed beds in Tuscany (Italy).

作者信息

Giraldi D, Masciandaro G, Peruzzi E, Bianchi V, Peruzzi P, Ceccanti B, Iannelli R

机构信息

Department of Civil Engineering, University of Pisa, Via Gabba 22, 56122 Pisa, Italy.

出版信息

Water Sci Technol. 2009;60(5):1209-16. doi: 10.2166/wst.2009.418.

Abstract

The management of sewage sludge has recently become one of the most significant challenges in wastewater management. Reed bed systems appear to be an efficient and economical solution for sludge management in small wastewater treatment plants. Four years ago, one of the holding companies for water and wastewater in central Italy adopted this technology in 6 wastewater treatment plants. Hydraulic and biochemical analyses were performed on the most representative site to asses the behaviour of reed beds with regard to dewatering, mineralization and humification of disposed sludge. Moreover, daily water content analysis were performed in the interval between subsequent sludge loadings. Results indicated a decrease of sludge volume by about 93% on a yearly basis. Biochemical analysis highlighted that mineralization processes decrease over time due to a rapid decrease of microbial activity and labile substrates, such as DHase enzyme and water-soluble carbon and ammonium, respectively. Moreover, a significant interrelationship between the parameters linked with mineralization was found: after two years of operation, the process of mineralization of organic matter is still predominant in the humification of organic matter. Daily water content data were used to define a semi empirical equation describing the dynamics of the dewatering process. Overall, the use of sludge reed beds resulted feasible, ecologically sustainable and cost-effective.

摘要

污水污泥的管理最近已成为废水管理中最重大的挑战之一。芦苇床系统似乎是小型废水处理厂污泥管理的一种高效且经济的解决方案。四年前,意大利中部一家供水和污水处理控股公司在6个污水处理厂采用了这项技术。对最具代表性的场地进行了水力和生化分析,以评估芦苇床对处置污泥的脱水、矿化和腐殖化情况。此外,在后续污泥装载的间隔期间进行了每日含水量分析。结果表明,污泥体积每年减少约93%。生化分析突出显示,由于微生物活性和易分解底物(分别如DHase酶、水溶性碳和铵)的迅速减少,矿化过程随时间推移而减少。此外,发现与矿化相关的参数之间存在显著的相互关系:运行两年后,有机物的矿化过程在有机物的腐殖化过程中仍占主导地位。每日含水量数据用于定义一个描述脱水过程动态的半经验方程。总体而言,使用污泥芦苇床是可行的、生态可持续的且具有成本效益的。

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