MOE Key Laboratory of Cell Activities and Stress Adaptations, Lanzhou University, 222 South Tianshui Rd., Lanzhou, Gansu 730000, PR China.
MOE Key Laboratory of Cell Activities and Stress Adaptations, Lanzhou University, 222 South Tianshui Rd., Lanzhou, Gansu 730000, PR China.
Biosens Bioelectron. 2016 Nov 15;85:860-868. doi: 10.1016/j.bios.2016.06.007. Epub 2016 Jun 6.
P-nitrophenol is one of the most common contaminants in chemical industrial wastewater, and in situ real-time monitoring of PNP cannot be achieved by conventional analytical techniques. Here, a two-chamber microbial fuel cell with an aerobic anode chamber was tested as a biosensor for in situ real-time monitoring of PNP. Pseudomonas monteilii LZU-3, which was used as the biological recognition element, can form a biofilm on the anode electrode using PNP as a sole substrate. The optimal operation parameters of the biosensor were as follows: external resistance 1000Ω, pH 7.8, temperature 30°C, and maximum PNP concentration 50mgL(-1). Under these conditions, the maximum voltages showed a linear relationship with PNP concentrations ranging from 15±5 to 44±4.5mgL(-1). Furthermore, we developed a novel portable device for in situ real-time monitoring of PNP. When the device was applied to measure PNP in wastewater containing various additional aromatic compounds and metal ions, the performance of the biosensor was not affected and the correlation between the maximum voltages and the PNP concentrations ranging from 9±4mgL(-1) to 36 ± 5mgL(-1) was conserved. The results demonstrated that the MFC biosensor provides a rapid and cost-efficient analytical method for real-time monitoring of toxic and recalcitrant pollutants in environmental samples.
对硝基苯酚是化工废水中最常见的污染物之一,常规分析技术无法实现对 PNP 的原位实时监测。本文构建了一个具有有氧阳极室的两室微生物燃料电池,将其作为一种用于原位实时监测 PNP 的生物传感器。假单胞菌 LZU-3 可以利用 PNP 作为唯一的底物在阳极电极上形成生物膜,作为生物识别元件。生物传感器的最佳操作参数如下:外电阻 1000Ω,pH 值 7.8,温度 30°C,最大 PNP 浓度 50mgL(-1)。在此条件下,最大电压与 PNP 浓度在 15±5 至 44±4.5mgL(-1) 范围内呈线性关系。此外,我们开发了一种用于 PNP 原位实时监测的新型便携式设备。当该设备用于测量含有各种额外芳香族化合物和金属离子的废水中的 PNP 时,生物传感器的性能不受影响,最大电压与 PNP 浓度(范围为 9±4mgL(-1) 至 36 ± 5mgL(-1))之间仍保持相关性。结果表明,MFC 生物传感器为实时监测环境样品中的有毒和难降解污染物提供了一种快速且具有成本效益的分析方法。