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Utility of Ochrobactrum anthropi YC152 in a Microbial Fuel Cell as an Early Warning Device for Hexavalent Chromium Determination

机译:ch骨人细菌YC152在微生物燃料电池中作为六价铬测定的预警装置的实用性

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摘要

Fast hexavalent chromium (Cr(VI)) determination is important for environmental risk and health-related considerations. We used a microbial fuel cell-based biosensor inoculated with a facultatively anaerobic, Cr(VI)-reducing, and exoelectrogenic Ochrobactrum anthropi YC152 to determine the Cr(VI) concentration in water. The results indicated that O. anthropi YC152 exhibited high adaptability to pH, temperature, salinity, and water quality under anaerobic conditions. The stable performance of the microbial fuel cell (MFC)-based biosensor indicated its potential as a reliable biosensor system. The MFC voltage decreased as the Cr(VI) concentration in the MFC increased. Two satisfactory linear relationships were observed between the Cr(VI) concentration and voltage output for various Cr(VI) concentration ranges (0.0125–0.3 mg/L and 0.3–5 mg/L). The MFC biosensor is a simple device that can accurately measure Cr(VI) concentrations in drinking water, groundwater, and electroplating wastewater in 45 min with low deviations (<10%). The use of the biosensor can help in preventing the violation of effluent regulations and the maximum allowable concentration of Cr(VI) in water. Thus, the developed MFC biosensor has potential as an early warning detection device for Cr(VI) determination even if O. anthropi YC152 is a possible opportunistic pathogen.
机译:快速测定六价铬(Cr(VI))对于环境风险和与健康相关的考虑很重要。我们使用了基于微生物燃料电池的生物传感器,该传感器接种了兼性厌氧,Cr(VI)还原和外生电拟人O鱼YC152,以确定水中的Cr(VI)浓度。结果表明,人参拟南芥YC152在厌氧条件下对pH,温度,盐度和水质具有较高的适应性。基于微生物燃料电池(MFC)的生物传感器的稳定性能表明其作为可靠的生物传感器系统的潜力。 MFC电压随着MFC中Cr(VI)浓度的增加而降低。在各种Cr(VI)浓度范围(0.0125–0.3 mg / L和0.3–5 mg / L)中,在Cr(VI)浓度和电压输出之间观察到两个令人满意的线性关系。 MFC生物传感器是一种简单的设备,可以在45分钟内准确测量饮用水,地下水和电镀废水中的Cr(VI)浓度,且偏差很小(<10%)。生物传感器的使用可以帮助防止违反废水法规和水中六价铬的最大允许浓度。因此,即使拟南芥YC152是可能的机会性病原体,开发的MFC生物传感器也有潜力作为Cr(VI)测定的预警检测设备。

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