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A comprehensive approach for diagnosing opportunities for improving the performance of a WWTP

机译:诊断机会以提高污水处理厂绩效的综合方法

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High quality services of wastewater treatment require a continuous assessment and improvement of the technical, environmental and economic performance. This paper demonstrates a comprehensive approach for benchmarking wastewater treatment plants (WWTPs), using performance indicators (PIs) and indices (PXs), in a 'plan-do-check-act' cycle routine driven by objectives. The performance objectives herein illustrated were to diagnose the effectiveness and energy performance of an oxidation ditch WWTP. The PI and PX results demonstrated an effective and reliable oxidation ditch (good-excellent performance), and a non-reliable UV disinfection (unsatisfactory-excellent performance) related with influent transmittance and total suspended solids. The energy performance increased with the treated wastewater volume and was unsatisfactory below 50% of plant capacity utilization. The oxidation ditch aeration performed unsatisfactorily and represented 38% of the plant energy consumption. The results allowed diagnosing opportunities for improving the energy and economic performance considering the influent flows, temperature and concentrations, and for levering the WWTP performance to acceptable-good effectiveness, reliability and energy efficiency. Regarding the plant reliability for fecal coliforms, improvement of UV lamp maintenance and optimization of the UV dose applied and microscreen recommissioning were suggested.
机译:高质量的废水处理服务需要不断评估和改善技术,环境和经济绩效。本文演示了在目标驱动的“计划-执行-检查-执行”循环例程中使用性能指标(PI)和指标(PX)基准化废水处理厂(WWTP)的综合方法。本文所示的性能目标是诊断氧化沟WWTP的有效性和能量性能。 PI和PX结果表明,有效的和可靠的氧化沟(优异的性能),以及与进水透过率和总悬浮固体相关的不可靠的UV消毒(优异的性能)。能源绩效随着处理后的废水量的增加而提高,在工厂产能利用率的50%以下时,效果不理想。氧化沟曝气效果不理想,占工厂能耗的38%。这些结果为诊断机会提供了机会,考虑到进水流量,温度和浓度,可以提高能源和经济绩效,并可以使污水处理厂的性能达到可接受的良好有效性,可靠性和能效。关于粪便大肠菌的植物可靠性,建议改善紫外线灯的维护以及优化紫外线剂量的应用和微筛网的重新调试。

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