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A novel control strategy for efficient biological phosphorus removal with carbon-limited wastewaters

机译:碳限制废水有效去除生物磷的新控制策略

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This work shows the development and the in silico evaluation of a novel control strategy aiming at successful biological phosphorus removal in a wastewater treatment plant operating in an A~2/O configuration with carbon-limited influent. The principle of this novel approach is that the phosphorus in the effluent can be controlled with the nitrate setpoint in the anoxic reactor as manipulated variable. The theoretical background behind this control strategy is that reducing nitrate entrance to the anoxic reactor would result in more organic matter available for biological phosphorus removal. Thus, phosphorus removal would be enhanced at the expense of increasing nitrate in the effluent (but always below legal limits). The work shows the control development, tuning and performance in comparison to open-loop conditions and to two other conventional control strategies for phosphorus removal based on organic matter and metal addition. It is shown that the novel proposed strategy achieves positive nutrient removal results with similar operational costs to the other control strategies and open-loop operation.
机译:这项工作显示了一种新颖的控制策略的开发和计算机评估,该策略旨在在A〜2 / O构型,含碳受限进水的废水处理厂中成功去除生物磷。这种新颖方法的原理是,可以将缺氧反应器中的硝酸盐设定值作为调节变量来控制废水中的磷。该控制策略背后的理论背景是减少硝酸盐进入缺氧反应器将导致更多的有机物可用于生物除磷。因此,磷的去除将以废水中硝酸盐的增加为代价(但始终低于法律限制)而得到提高。与开环条件和基于有机物和金属添加的两种其他用于磷去除的常规控制策略相比,该工作显示了控制的开发,调整和性能。结果表明,新提出的策略以与其他控制策略和开环操作相似的运行成本实现了积极的营养去除效果。

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