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Development of an automation system to evaluate the three-dimensional oxygen distribution in wastewater biofilms using microsensors

机译:开发使用微传感器评估废水生物膜中三维氧气分布的自动化系统

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In this paper the authors describe the development of an automation system applicable to environmental biofilm studies. The automa-tion system controls a combined oxygen microsensor to measure the three-dimensional dissolved oxygen distribution in a wastewater biofilm sample. The biofilm is sampled from a rotating biological contactor in a municipal wastewater treatment plant. The automation system consists of a data acquisition system, a motion control system, and a computer program. The combined oxygen microsensor con-sists of a sensing electrode, a reference electrode. a guard cathode, an oxygen permeable membrane, and an electrolyte solution. The automation system allows the acquisition and storage of data from 4000 measurements from the microsensor and the precise positioning of the microsensor in order to measure 100 dissolved oxygen profiles in a 1000 μm x 1000 μm biofilm area. The three-dimensional pro-file shows that the dissolved oxygen concentration in the biofilm sample is highly heterogeneous and it revealed "pockets" of dissolved oxygen in deep sections of the biofilm sample. The automation system and the combined oxygen microsensor were proven to be tools that improve the quantity and quality of experimental results needed to understand important functions in biofilms used in wastewater treatment.
机译:在本文中,作者描述了适用于环境生物膜研究的自动化系统的开发。自动化系统控制组合式氧气微传感器,以测量废水生物膜样品中的三维溶解氧分布。生物膜是从市政废水处理厂的旋转生物接触器中取样的。自动化系统由数据采集系统,运动控制系统和计算机程序组成。组合式氧气微传感器由感应电极,参比电极组成。保护阴极,透氧膜和电解质溶液。自动化系统允许从微传感器采集和存储来自4000次测量的数据,并精确定位微传感器,以便在1000μmx 1000μm生物膜区域中测量100种溶解氧分布。三维轮廓显示,生物膜样品中的溶解氧浓度高度不均一,并且揭示了生物膜样品深部中溶解氧的“口袋”。事实证明,自动化系统和组合式氧气微传感器是提高理解废水处理中生物膜重要功能所需的实验结果的数量和质量的工具。

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