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

机译:受控操作扰动下微型微生物燃料电池的农药检测

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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 mu A cm(-2) current variation per unit change of pH. Within the range tested, temperature and ionic strength had only a minor impact (0.010 +/- 0.001 mu A degrees C-1 cm(-2) and of 0.027 +/- 0.003 mu A mS(-1) cm cm(-2) 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(-1) cm(-2), 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.
机译:微生物燃料电池(MFC)技术对水源的廉价实时和现场测试具有巨大潜力。的意图限定最佳操作条件的,我们调查的环境因素(温度,pH和离子强度的变化)的影响,在一个单室MFC的微型传感器的性能。流入物的pH对MFC性能的影响最大,每单位pH值为0.531 +/-0.064μm(-2)电流变化。内测试的范围内,温度和离子强度仅具有很小的影响(0.010 +/- 0.001亩a度C-1厘米(-2)和0.027 +/- 0.003亩甲MS(-1)厘米厘米(-2 ) 分别)。在受控的运营条件下,我们首次证明了这种生物传感器检测全球最常用的杀虫剂之一的能力尿嘧啶。对阿特拉嗪的敏感性为1.39 +/- 0.26ppm(-1)cm(-2),检测范围为0.05-0.3ppm。还提供了通过因子设计方法对MFC生物传感器对实际应用进行实际应用的系统研究指南。因此,我们的工作不仅强制执行微型MFC生物传感器对水域中的有机污染物检测的承诺,而且还提供了对infiefatify应用的未来调查的重要方向。

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