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Development of a novel electrochemical system for oxygen control (ESOC) to examine dissolved oxygen inhibition on algal activity

机译:开发一种新型的氧气控制电化学系统(ESOC),以检查溶解氧对藻类活性的抑制作用

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The development of an Electrochemical System for Oxygen Control (ESOC) for examining algal photosynthetic activity as a function of dissolved oxygen (DO) is outlined. The main innovation of the tool is coulombic titration in order to balance the electrochemical reduction of oxygen with the oxygen input to achieve a steady DO set-point. ESOC allows quantification of algal oxygen production whilst simultaneously maintaining a desired DO concentration. The tool was validated abiotically by comparison with a mass transfer approach for quantifying oxygenation. It was then applied to quantify oxygen inhibition of algal activity. Five experiments, using an enriched culture of Scenedesmus sp. as the inoculum, are presented. For each experiment, ESOC was used to quantify algal activity at a series of DO set-points. In all experiments substantial oxygen inhibition was observed at DO >30mgO2L-1. Inhibition was shown to fit a Hill inhibition model, with a common Hill coefficient of 0.22±0.07L mg-1 and common log10CI50 of 27.2±0.7mgL-1. This is the first time that the oxygen inhibition kinetic parameters have been quantified under controlled DO conditions. Biotechnol. Bioeng. 2013; 110:2405-2411.
机译:概述了用于检查藻类光合作用随溶解氧(DO)变化的氧气控制电化学系统(ESOC)的开发。该工具的主要创新之处在于库仑滴定法,目的是平衡氧气的电化学还原与氧气输入量之间的平衡,以实现稳定的DO设定值。 ESOC可以量化藻类氧气的产生量,同时保持所需的DO浓度。通过与定量氧化的传质方法进行比较,对该工具进行了非生物验证。然后将其用于量化氧气对藻类活性的抑制作用。五个实验,使用Scenedesmus sp。的丰富培养物。作为接种物。对于每个实验,使用ESOC来量化一系列DO设定点上的藻类活性。在所有实验中,在DO> 30mgO2L-1时都观察到了明显的氧气抑制作用。已显示抑制符合Hill抑制模型,共同的Hill系数为0.22±0.07L mg-1,共同的log10CI50为27.2±0.7mgL-1。这是首次在受控的溶解氧条件下对氧气抑制动力学参数进行了定量。生物技术。生恩2013; 110:2405-2411。

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