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在可控操作干扰下通过微型微生物燃料电池进行农药检测

Pesticide detection by a miniature microbial fuel cell under controlled operational disturbances.

作者信息

Chouler Jon, Di Lorenzo Mirella

机构信息

Centre for Biosensors, Bioelectronics and Biodevices and Department of Chemical Engineering, University of Bath, Bath BA2 7AY, UK E-mail:

出版信息

Water Sci Technol. 2019 Jun;79(12):2231-2241. doi: 10.2166/wst.2019.207.

Abstract

Microbial fuel cell (MFC) technology holds enormous potential for inexpensive real-time and onsite testing of water sources. With the intent of defining optimal operational conditions, we investigated the effect of environmental factors (changes in temperature, pH and ionic strength), on the performance of a single chamber miniature MFC sensor. The pH of the influent had the greatest effect on the MFC performance, with a 0.531 ± 0.064 μA cm current variation per unit change of pH. Within the range tested, temperature and ionic strength had only a minor impact (0.010 ± 0.001 μA °C cm and of 0.027 ± 0.003 μA mS cm cm respectively). Under controlled operational conditions, for the first time, we demonstrated the ability of this biosensor to detect one of the most commonly applied pesticides worldwide, atrazine. The sensitivity to atrazine was 1.39 ± 0.26 ppm cm, with a detection range of 0.05-0.3 ppm. Guidelines for systematic studies of MFC biosensors for practical applications through a factorial design approach are also provided. Consequently, our work not only enforces the promise of miniature MFC biosensors for organic pollutants detection in waters, but it also provides important directions towards future investigations for infield applications.

摘要

微生物燃料电池(MFC)技术在廉价的实时现场水源检测方面具有巨大潜力。为了确定最佳运行条件,我们研究了环境因素(温度、pH值和离子强度的变化)对单室微型MFC传感器性能的影响。进水的pH值对MFC性能影响最大,pH值每单位变化电流变化为0.531±0.064μA/cm²。在所测试的范围内,温度和离子强度的影响较小(分别为0.010±0.001μA/°C/cm²和0.027±0.003μA/mS/cm²)。在受控的运行条件下,我们首次展示了这种生物传感器检测全球最常用农药之一阿特拉津的能力。对阿特拉津的灵敏度为1.39±0.26ppm/cm²,检测范围为0.05 - 0.3ppm。还提供了通过析因设计方法对用于实际应用MFC生物传感器进行系统研究的指导方针。因此,我们的工作不仅强化了微型MFC生物传感器用于水中有机污染物检测的前景,还为未来的现场应用研究提供了重要方向。

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