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A VFA-based controller for anaerobic digestion of industrial winery wastewater

机译:基于VFA的工业酿酒废水厌氧消化的控制器

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摘要

A variable-gain controller for anaerobic digestion of industrial winery wastewater is presented. A control law using both volatile fatty acids (VFA) and methane production rate as controlled variables and organic loading rate (OLR) as manipulated variable is defined. The process state is quantitatively estimated by an empirical function comparing VFA measurements against a setpoint value; then, it is modified with a second empirical function that compares the methane flow rate with a maximum capacity reference, and finally it is adjusted with a third factor considering the actual hydraulic retention time. The variable-gain function determines the extent of the OLR change applied to the system. The controller was successfully validated in a 95 L upflow-anaerobic-sludge-blanket (UASB) reactor, treating industrial wine wastewater at OLR ranged between 2.0 and 39.2 g COD/L d for 120 days at mesophilic conditions. Higher performance was achieved contrasted with a conventional strategy carried out in a parallel UASB unit.
机译:提出了一种用于工业酿酒厂废水的厌氧消化的可变增益控制器。定义了使用挥发性脂肪酸(VFA)和甲烷生产率作为控制变量和有机加载速率(OLR)的控制定律,如操纵变量。通过比较VFA测量对设定值的实证函数来定量估计处理状态;然后,用第二经验函数进行修改,该第二经验函数将甲烷流速与最大容量参考进行比较,最后用考虑实际液压保留时间的第三因素调节。可变增益功能确定应用于系统的OLR更改的程度。控制器成功验证在95L上流 - 厌氧 - 污泥 - 毯子(UASB)反应器中,在奥尔尔处理的工业葡萄酒废水范围为2.0至39.2g COD / L D,在中抚化条件下120天。较高的性能与并联UASB单元进行的传统策略对比。

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