Lovecchio Nicola, Di Meo Valentina, Pietrelli Andrea
Department of Information Engineering, Electronics and Telecommunications, Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, Italy.
Institute of Applied Sciences and Intelligent Systems, National Research Council of Italy, Via Pietro Castellino 111, 80131 Naples, Italy.
Bioengineering (Basel). 2023 May 22;10(5):624. doi: 10.3390/bioengineering10050624.
This work presents the development of an automatic and customized measuring system employing sigma-delta analog-to-digital converters and transimpedance amplifiers for precise measurements of voltage and current signals generated by microbial fuel cells (MFCs). The system can perform multi-step discharge protocols to accurately measure the power output of MFCs, and has been calibrated to ensure high precision and low noise measurements. One of the key features of the proposed measuring system is its ability to conduct long-term measurements with variable time steps. Moreover, it is portable and cost-effective, making it ideal for use in laboratories without sophisticated bench instrumentation. The system is expandable, ranging from 2 to 12 channels by adding dual-channel boards, which allows for testing of multiple MFCs simultaneously. The functionality of the system was tested using a six-channel setup, and the results demonstrated its ability to detect and distinguish current signals from different MFCs with varying output characteristics. The power measurements obtained using the system also allow for the determination of the output resistance of the MFCs being tested. Overall, the developed measuring system is a useful tool for characterizing the performance of MFCs, and can be helpful in the optimization and development of sustainable energy production technologies.
这项工作展示了一种自动定制测量系统的开发,该系统采用∑-Δ模数转换器和跨阻放大器,用于精确测量微生物燃料电池(MFC)产生的电压和电流信号。该系统可以执行多步放电协议,以准确测量MFC的功率输出,并经过校准以确保高精度和低噪声测量。所提出的测量系统的关键特性之一是其能够以可变时间步长进行长期测量。此外,它便于携带且具有成本效益,非常适合在没有复杂台式仪器的实验室中使用。该系统可扩展,通过添加双通道板可从2通道扩展到12通道,这使得能够同时测试多个MFC。使用六通道设置对系统功能进行了测试,结果表明其能够检测和区分来自具有不同输出特性的不同MFC的电流信号。使用该系统获得的功率测量结果还可以确定被测MFC的输出电阻。总体而言,所开发的测量系统是表征MFC性能的有用工具,有助于可持续能源生产技术的优化和发展。