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Full-cyclic control strategy of SBR for nitrogen removal in strong wastewater using common sensors

机译:使用通用传感器的强力废水脱氮SBR的全循环控制策略

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摘要

A full-cyclic automatic control strategy for sequencing batch reactors (SBR) was proposed using only common sensors such as ORP, DO and pH. The main objective was to develop a generally applicable and robust control strategy. To accomplish this, various control schemes found in the literature or suggested by authors were examined at diverse ammonia loads and SCOD/NH4+-N ratios. Advantages and constraints of each scheme were discussed and compared. Ammonia load was estimated with DO lag time during the aerobic stage, and then the influent pump was manipulated to meet the desired load at the next anoxic stage. A partial denitrification scheme was chosen for the anoxic stage period control, to save anoxic time and external carbon. For external carbon dosage control, intermittent feeding at each anoxic stage was concluded to be a suitable scheme. The anoxic stage period could be successfully controlled by the combination of pH increase and DO increase. Every suggested control scheme was incorporated into a full-cyclic control strategy and tested at 0.02, 0.035, 0.08 kg NH4+--N/m(3)/sub-cycle. From the results, it is expected to perform unmanned automatic SBR operation with this strategy.
机译:提出了仅使用诸如ORP,DO和pH的通用传感器对批量反应器(SBR)进行排序的全周期自动控制策略。主要目标是开发一种普遍适用且鲁棒的控制策略。为了实现这一目标,研究人员在不同的氨气负荷和SCOD / NH4 + -N比下研究了文献中发现或作者建议的各种控制方案。讨论并比较了每种方案的优势和局限性。在有氧阶段用DO滞后时间估算氨负荷,然后操纵进水泵以在下一个缺氧阶段满足所需负荷。选择部分脱氮方案用于缺氧阶段的时间控制,以节省缺氧时间和外部碳。对于外部碳剂量控制,断定每个缺氧阶段的间歇喂食都是合适的方案。通过增加pH和增加DO可以成功地控制缺氧阶段。每个建议的控制方案均已纳入全周期控制策略,并在0.02、0.035、0.08 kg NH4 +-N / m(3)/子循环下进行了测试。从结果来看,有望通过这种策略执行无人值守的SBR操作。

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