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植物视角下的植物微生物燃料电池:命名限制及对可能影响生物电性能的植物性状的新见解

Plant Microbial Fuel Cells in a botanical perspective: Nomenclatural constraints and new insights on plant traits potentially affecting bioelectrical perfomance.

作者信息

Brugellis Ilaria, Grassi Marco, Malcovati Piero, Assini Silvia

机构信息

Department of Earth and Environmental Science, University of Pavia, Via Sant'Epifanio 14, 27100, Pavia, Italy.

Department of Electrical Computer and Biomedical Engineering, University of Pavia, Via A. Ferrata 5, Pavia, Italy.

出版信息

Heliyon. 2024 Oct 1;10(19):e38733. doi: 10.1016/j.heliyon.2024.e38733. eCollection 2024 Oct 15.

Abstract

Plant microbial fuel cells represent an innovative type of microbial fuel cell technology, utilizing plant rhizodeposition to fuel electrochemically active bacteria on the anode surface, thereby generating bioelectricity. This study delves into some botanical aspects of plant species employed in PMFCs and Constructed Wetland PMFCs, aiming to investigate whether their bioelectrical performance is influenced by Raunkiær life forms and root architecture. Our study involved 40 plant species described in 38 documents. In some cases, nomenclature issues prevented the interpretation of actual species used in the experiments. The bioelectrical performance of PMFCs appeared to be significantly affected by both life forms and root architecture. Therophytes and Hemicriptophytes exhibited higher median values than the other life forms, while the Geophyte group showed very high power density values despite a lower median value. In contrast, CW-PMFCs do not appeared to be significantly affected by the botanical traits considered, likely due to the limited data collected on this experimental configuration. The plant species that performed the best in PMFCs include , , and , all of which have an adventitious root system. , and are geophytes, while is a hydrophyte. Consequently, epiphytes, chamaephytes and nanophanerophytes, as well as plants with fibrous root systems, appeared to be not recommended for PMFCs. Nevertheless, the results of our study may have certain limitation due to nomenclature issues that prevented the accurate identification of species used in the PMFCs, the absence of a standardized benchmark for electrical measurement, and the lack of clear match between each species and its bioelectrical performance, reducing the data pool.

摘要

植物微生物燃料电池是一种创新型的微生物燃料电池技术,它利用植物根系分泌物为阳极表面的电化学活性细菌提供燃料,从而产生生物电。本研究深入探讨了用于植物微生物燃料电池和人工湿地植物微生物燃料电池的植物物种的一些植物学方面,旨在研究它们的生物电性能是否受到劳恩凯尔植物生活型和根系结构的影响。我们的研究涉及38篇文献中描述的40种植物物种。在某些情况下,命名问题妨碍了对实验中实际使用物种的解读。植物微生物燃料电池的生物电性能似乎受到生活型和根系结构的显著影响。一年生植物和地面芽植物的中值高于其他生活型,而地下芽植物组尽管中值较低,但显示出非常高的功率密度值。相比之下,人工湿地植物微生物燃料电池似乎没有受到所考虑的植物学特征的显著影响,这可能是由于在这种实验配置上收集的数据有限。在植物微生物燃料电池中表现最佳的植物物种包括 、 、 和 ,它们都有不定根系。 、 和 是地下芽植物,而 是水生植物。因此,附生植物、地上芽植物和小高位芽植物,以及具有须根系的植物,似乎不推荐用于植物微生物燃料电池。然而,由于命名问题妨碍了对植物微生物燃料电池中使用物种的准确识别、缺乏电测量的标准化基准以及每个物种与其生物电性能之间缺乏明确匹配,我们的研究结果可能有一定局限性,减少了数据池。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d821/11471249/bc51ab1d0706/ga1.jpg

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