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Treatment of winery wastewater in a sequencing batch biofilm reactor

机译:序批式生物膜反应器中酒厂废水的处理

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Pilot-scale experiments were carried out applying the SBBR process (Sequencing Batch Biofilm Reactor) for the treatment of winery wastewater. The aim was the evaluation of the SBBR performance and the development of a control strategy based on dissolved oxygen (DO) for the optimisation of the SBBR treatment cycle and the minimisation of the energy supply. The results of the experimentation have confirmed the applicability of the SBBR process pointing out high COD removal efficiencies between 86% and 99%, with applied loads up to 29 gCOD m(-2) d(-1), corresponding to 8.8 kgCOD m(-3) d(-1). The on-line monitoring of DO concentration appeared as a good indicator of the progress in the COD biodegradation. The control strategy for the ending of the SBBR cycles was based on the time derivative of the DO concentration, The optimised control strategy makes it possible to obtain a steady quality of the effluent wastewater with an average daily applied load of 6.3 kgCOD m(-3) d(-1) rather than 3.5 kgCOD m(-3) d(-1) for the non-optimised SBBR cycle. The possibility of optimising the SBBR cycle through a simple control of the DO in the mixed liquor could be an interesting solution for the biological pre-treatment of winery wastewater to be discharged into sewerage or as a single-stage of a combined treatment plant for the discharge into surface water. [References: 6]
机译:应用SBBR工艺(测序批生物膜反应器)进行了中度试验,用于处理酿酒厂废水。目的是评估SBBR性能,并开发基于溶解氧(DO)的控制策略,以优化SBBR处理周期并最小化能源供应。实验结果证实了SBBR工艺的适用性,指出了较高的COD去除率在86%至99%之间,施加的载荷高达29 gCOD m(-2)d(-1),相当于8.8 kgCOD m( -3)d(-1)。溶解氧浓度的在线监测似乎是化学需氧量生物降解进展的良好指标。 SBBR循环结束的控制策略基于溶解氧浓度的时间导数。优化的控制策略使废水的稳定质量成为可能,平均日负荷为6.3 kgCOD m(-3 )d(-1),而不是非优化SBBR周期的3.5 kgCOD m(-3)d(-1)。通过简单控制混合液中的溶解氧来优化SBBR循环的可能性,可能是将酿酒厂废水排入下水道的生物预处理的一种有趣解决方案,也可以作为污水处理厂联合处理厂的一个阶段排入地表水中。 [参考:6]

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