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Energy audit in small wastewater treatment plants: methodology, energy consumption indicators, and lessons learned

机译:小型污水处理厂的能源审计:方法,能耗指标和经验教训

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Energy audits in wastewater treatment plants (WWTPs) reveal large differences in the energy consumption in the various stages, depending also on the indicators used in the audits. This work is aimed at formulating a suitable methodology to perform audits in WWTPs and identifying the most suitable key energy consumption indicators for comparison among different plants and benchmarking. Hydraulic-based stages, stages based on chemical oxygen demand, sludge-based stages and building stages were distinguished in WWTPs and analysed with different energy indicators. Detailed energy audits were carried out on five small WWTPs treating less than 10,000 population equivalent and using continuous data for 2 years. The plants have in common a low designed capacity utilization (52% on average) and equipment oversizing which leads to waste of energy in the absence of controls and inverters (a common situation in small plants). The study confirms that there are several opportunities for reducing energy consumption in small WWTPs: in addition to the pumping of influent wastewater and aeration, small plants demonstrate low energy efficiency in recirculation of settled sludge and in aerobic stabilization. Denitrification above 75% is ensured through intermittent aeration and without recirculation of mixed liquor. Automation in place of manual controls is mandatory in illumination and electrical heating.
机译:废水处理厂(WWTP)的能源审核显示,各个阶段的能耗差异很大,这也取决于审核中使用的指标。这项工作旨在制定一种合适的方法来对污水处理厂进行审核,并确定最合适的关键能耗指标,以便在不同工厂之间进行比较和进行基准测试。在污水处理厂中,区分了基于水力的阶段,基于化学需氧量的阶段,基于污泥的阶段和建筑阶段,并使用不同的能源指标进行了分析。对五个小型污水处理厂进行了详细的能源审核,这些污水处理厂的人口少于10,000人,并使用了连续两年的数据。这些电厂的设计产能利用率普遍较低(平均为52%),并且设备尺寸过大,导致在没有控制装置和逆变器的情况下浪费能源(这在小型电厂中很常见)。这项研究证实,减少小型污水处理厂的能耗还有很多机会:除了抽入污水和曝气外,小型工厂在沉降污泥的再循环和有氧稳定方面显示出较低的能源效率。通过间歇曝气和不使混合液再循环,可确保反硝化率达到75%以上。在照明和电加热中,必须使用自动化代替手动控制。

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