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首页> 外文期刊>Journal of water resource and protection >Performance Evaluation of Waste Stabilisation Ponds
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Performance Evaluation of Waste Stabilisation Ponds

机译:废物稳定池的性能评估

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摘要

Waste stabilisation pond system has been used more especially in developing countries for sewage treatment. The objective of this study was to investigate the hydraulic and performance efficiency of Palapye waste stabilisation ponds. The hydraulic efficiency was evaluated through drogue, pond geometry and sludge accumulation assessment. The performance efficiency was evaluated through periodic sampling and analysis of physiochemical and bacteriological parameters of individual units and of the system as a whole. Except for the maturation ponds, the depth of the anaerobic pond had reduced from 4 m to 0.45 m, for facultative ponds from 2.0 m to a range of 0.52 m - 0.91 m. The design hydraulic retention time of the system had reduced from 20 days to 7.1 days. The concentration of some physiochemical parameters in the effluent was 305 mg·L~(-1), 277 Nephelometric Turbidity Units (NTU), 204 mg·L~(-1), 156 mg·L~(-1), 110 mg·L~(-1), and 15 mg·L~(-1) being total suspended solids, turbidity, nitrates, chemical oxygen demand, biochemical oxygen demand and phosphate respectively. These values were more than the standard limits of the country. Effluent total coliforms concentration was 3.6 log units and within the threshold of 4.3 log units, faecal coliforms concentration was 3.5 log units, slightly higher than the threshold of 3 log units. Though Escherichia coli have no limits for discharge into other environments, the concentration in the effluent was reasonable at 2.5 log units and also within irrigation limit of 3 log counts. Palapye wastewater treatment system hydraulic efficiency is lower than the design criterion. The system was overall poor in physiochemical parameters removal but better in bacteriological removal.
机译:废物稳定化池塘系统在污水处理中尤其被使用于发展中国家。这项研究的目的是调查Palapye垃圾稳定池的水力和性能效率。通过锥孔,池塘几何形状和污泥积累评估来评估水力效率。通过定期采样和分析单个单元以及整个系统的生理化学和细菌学参数来评估性能效率。除成熟池外,厌氧池的深度从4 m减小至0.45 m,而兼性池的深度从2.0 m减小至0.52 m-0.91 m。系统的设计水力停留时间已从20天减少到7.1天。出水中一些理化参数的浓度为305 mg·L〜(-1),浊度浊度单位(NTU)277、204 mg·L〜(-1),156 mg·L〜(-1),110 mg ·L〜(-1)和15 mg·L〜(-1)分别是总悬浮固体,浊度,硝酸盐,化学需氧量,生化需氧量和磷酸盐。这些值超过了国家的标准限值。废水中大肠菌群的总浓度为3.6 log单位,在4.3 log单位的阈值以内,粪便大肠菌群的浓度为3.5 log单位,略高于3 log的阈值。尽管大肠杆菌没有限制排放到其他环境中,但废水中的浓度合理,为2.5 log单位,并且在3 log log的灌溉限值之内。 Palapye废水处理系统的水力效率低于设计标准。该系统在理化参数去除方面总体较差,但在细菌学去除方面较好。

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