Flame-Oxidized Stainless-Steel Anode as a Probe in Bioelectrochemical System-Based Biosensors to Monitor the Biochemical Oxygen Demand of Wastewater
Abstract
:1. Introduction
2. Materials and Methods
2.1. Biosensor Construction
2.2. Biosensor Operation and Analysis
3. Results and Discussion
3.1. BOD Monitoring
3.2. Efficacy of the FO-SSA as a BES-Based BOD Biosensor Probe
3.3. Potential Applications of FO-SSA-Equipped BOD Biosensors
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Response Time (h) | FO-SSA | CCA |
---|---|---|
1 | 0.805 | 0.696 |
2 | 0.823 | 0.752 |
3 | 0.845 | 0.789 |
4 | 0.860 | 0.803 |
5 | 0.874 | 0.820 |
6 | 0.884 | 0.836 |
7 | 0.894 | 0.851 |
8 | 0.902 | 0.867 |
10 | 0.918 | 0.895 |
12 | 0.924 | 0.912 |
16 | 0.937 | 0.930 |
20 | 0.941 | 0.939 |
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Liang, Q.; Yamashita, T.; Yamamoto-Ikemoto, R.; Yokoyama, H. Flame-Oxidized Stainless-Steel Anode as a Probe in Bioelectrochemical System-Based Biosensors to Monitor the Biochemical Oxygen Demand of Wastewater. Sensors 2018, 18, 607. https://doi.org/10.3390/s18020607
Liang Q, Yamashita T, Yamamoto-Ikemoto R, Yokoyama H. Flame-Oxidized Stainless-Steel Anode as a Probe in Bioelectrochemical System-Based Biosensors to Monitor the Biochemical Oxygen Demand of Wastewater. Sensors. 2018; 18(2):607. https://doi.org/10.3390/s18020607
Chicago/Turabian StyleLiang, Qiaochu, Takahiro Yamashita, Ryoko Yamamoto-Ikemoto, and Hiroshi Yokoyama. 2018. "Flame-Oxidized Stainless-Steel Anode as a Probe in Bioelectrochemical System-Based Biosensors to Monitor the Biochemical Oxygen Demand of Wastewater" Sensors 18, no. 2: 607. https://doi.org/10.3390/s18020607
APA StyleLiang, Q., Yamashita, T., Yamamoto-Ikemoto, R., & Yokoyama, H. (2018). Flame-Oxidized Stainless-Steel Anode as a Probe in Bioelectrochemical System-Based Biosensors to Monitor the Biochemical Oxygen Demand of Wastewater. Sensors, 18(2), 607. https://doi.org/10.3390/s18020607