植物燃料电池化学电势原位监测数据采集系统

F. Chee, Cheng-Ann Chen, Jackson Hian Wui Chang, Ying Ying Choo, J. Dayou
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引用次数: 4

摘要

植物的光合作用过程产生多种生物能源。然而,只有一小部分容易被开发为电能。环境因素的影响是影响植物电位的重要生理因素之一。因此,我们开发了一个数据采集(DAQ)系统,用于瞬时监测植物的电位,并使用芦荟作为植物样本。采用静态响应表征、能力指数(P/T)和Pearson相关系数等方法评估所得数据的可靠性。这种开发的系统提供了现场监测和检测植物电位逐渐变化的能力,相关强度大于0.7。通过该监测系统的应用,可以实现对芦荟植物电信号机制的解读和电的优化。因此,该系统可以作为测量和分析植物在不同条件下电信号的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Acquisition System for In Situ Monitoring of Chemoelectrical Potential in Living Plant Fuel Cells
Photosynthesis process in plants generates numerous sources of bioenergy. However, only a small fraction is readily exploited for electrical energy. The impact of environmental factors is one of the significant physiological influences on the electrical potential of the plants. Hence, we developed a data acquisition (DAQ) system for instantaneous monitoring of electrical potential in plants and Aloe vera was used as a plant sample. The static response characterization, capability index (P/T), and Pearson's coefficient of correlation procedures were applied to assess the reliability of the obtained data. This developed system offers the capability of in situ monitoring and detecting gradual changes in the electrical potential of plants up to a correlational strength of greater than 0.7. Interpretation of the electrical signal mechanisms in the Aloe vera plant and the optimization of the electricity can be achieved through the application of this monitoring system. This system, therefore, can serve as a tool to measure and analyze the electrical signals in plants at different conditions.
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