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钛网作为电化学活性生物膜传感器的阳极,用于提高水毒性实时预警的灵敏度。

Titanium mesh as the anode of electrochemically active biofilm sensor for improved sensitivity in water toxicity real-time early-warning.

作者信息

Liu Xinning, Qi Xiang, Gu Yuyi, Huang Xia, Liang Peng

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, 100084, PR China.

State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, 100084, PR China.

出版信息

Biosens Bioelectron. 2023 Dec 1;241:115692. doi: 10.1016/j.bios.2023.115692. Epub 2023 Sep 15.

Abstract

As serious water ecological pollution caused by toxicant leakage occurs frequently, early-warning for toxicity presented in water environment attracts increasing attentions as it saves time to retain water safety and human health. Electrochemically active biofilm (EAB) sensor is a promising device for in situ real-time water toxicity early-warning. To improve the sensitivity of EAB sensor particularly for low-concentration toxicity warning, this study employed titanium mesh (TiM) as the anode to construct an EAB sensor. Compared to traditional EAB sensor with carbon felt (CF) anode, the sensitivity of the TiM sensor was increased up to 37.4 times. The effects of mesh size (TiM50, TiM100, TiM150) and operation mode (flow-by and flow-through) on the sensitivity of TiM sensors were further investigated. Results showed the sensor with TiM100 anode had the highest inhibition rate (IR) in flow-by mode, attributed to low charge transfer resistance (R) and fast mass transfer. Flow-through operation could further enhance TiM100 sensor's sensitivity from flow-by operation and succeeded to signal as low as 0.0025% formaldehyde, the lowest so far tested in EAB sensor with sensing anode. Multiple toxicity shocks on flow-through TiM100 sensor revealed its good recoverability towards all tested formaldehyde concentration from 0.01% to 0.0025%, during which electrochemical activity degradation and biomass accumulation partially impaired the repeatability. This work highlights the great improvement of EAB sensors by utilizing titanium mesh as EAB carrier and provides a reference for the practical application of metallic materials for EAB sensors.

摘要

由于有毒物质泄漏导致的严重水生态污染频繁发生,水环境中毒性的早期预警因其对保障水安全和人类健康具有及时性而受到越来越多的关注。电化学活性生物膜(EAB)传感器是一种有前景的用于原位实时水毒性早期预警的装置。为了提高EAB传感器的灵敏度,特别是对于低浓度毒性预警,本研究采用钛网(TiM)作为阳极来构建EAB传感器。与传统的以碳毡(CF)为阳极的EAB传感器相比,TiM传感器的灵敏度提高了37.4倍。进一步研究了网孔尺寸(TiM50、TiM100、TiM150)和操作模式(旁流和流通)对TiM传感器灵敏度的影响。结果表明,在旁流模式下,以TiM100为阳极的传感器具有最高的抑制率(IR),这归因于低电荷转移电阻(R)和快速传质。流通操作可以进一步提高TiM100传感器相对于旁流操作的灵敏度,并成功检测到低至0.0025%的甲醛信号,这是迄今为止在带有传感阳极的EAB传感器中测试到的最低浓度。对流通式TiM100传感器进行多次毒性冲击试验表明,其对所有测试的甲醛浓度(从0.01%到0.0025%)都具有良好的恢复能力,在此期间,电化学活性的降低和生物量的积累部分损害了其重复性。这项工作突出了利用钛网作为EAB载体对EAB传感器的巨大改进,并为金属材料在EAB传感器中的实际应用提供了参考。

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