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Activated sludge wastewater treatment plants optimisation to face pollution overloads during grape harvest periods

机译:优化活性污泥废水处理厂以应对葡萄收获期的污染超负荷

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The principal objective of our study was to optimise a municipal activated sludge wastewater treatment plant (WWTP) to face high organic flows due to viticulture effluents inputs. Treatment file optimization consisted in testing different treatment lines, changing the number and volume of biological basins and clarifiers, with or without a buffer basin upstream, with a view to achieving a better reduction of COD. The actual WWTP biological stage is composed of two aerated basins whose total volume is 1365 m(3). The studied cases are successively, the installation of a single basin of 1365 m(3), then of several basins whose total volume remains constant and equal to 1365 m(3). Another case was also considered, that of an aerated basin followed by a first clarifier and then, by another aerated basin and a second clarifier. All scenarios presented below were evaluated, for standard dry weather conditions and for high organic load conditions, as encountered during the grape harvest period. The method used was to carry out various simulations, using numerical modelling, and to compare the impact of different process line scenarios and management strategies on the activated sludge WWTP efficiencies.
机译:我们研究的主要目标是优化市政活性污泥废水处理厂(WWTP),以应对由于葡萄栽培废水输入而产生的高有机流量。处理文件的优化包括测试不同的处理线,改变生物池和澄清池的数量和体积,上游或不带缓冲池,以期更好地减少COD。实际的污水处理厂生物阶段由两个总容积为1365 m(3)的曝气池组成。被研究的案例是先安装一个1365 m(3)的盆地,然后再安装几个总体积恒定且等于1365 m(3)的盆地。还考虑了另一种情况:加气池,后接第一澄清池,然后是另一加气池和第二澄清池。在葡萄收获期遇到的标准干旱天气条件和高有机负荷条件下,评估了以下所有方案。使用的方法是使用数值模型进行各种模拟,并比较不同工艺流程方案和管理策略对活性污泥污水处理厂效率的影响。

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