Département de chimie, Faculté des sciences et de génie, Université Laval, Québec G1V 0A6, Canada.
CHU de Québec, Université Laval, Québec G1L 3L5, Canada.
Lab Chip. 2022 May 17;22(10):1905-1916. doi: 10.1039/d2lc00098a.
A recent trend in microfluidic microbial fuel cells (MFCs) is to exclude a separation membrane, instead, relying on the physics of laminar flow to maintain isolation between anode and cathode compartments. To avoid solution crossover, the electrodes may be separated by distances of several millimeters, but this negatively affects the internal resistance and undermines a prime advantage of microscale MFCs. Therefore, we propose a facile method for synthesis of a micromembrane that supports sub-millimeter electrode spacing. Membrane synthesis reduces device fabrication complexity, and the proposed design avoids electrode contamination during its synthesis. Comparing results to a state-of-the-art membraneless MFC with 6 mm inter-electrode distances, the sub-millimeter membrane MFC under comparable flow conditions had an internal resistance that was 60% lower, power and current densities that were respectively 45% and 290% higher, and acetate conversion efficiencies that were 8 times higher. The enhanced flow stability provided stable operation under imbalanced flow conditions and delivered continuous increases to power density of up to 30% for flow rate increases of 100 times over baseline levels. As a result, maximum outputs obtained were 660 mW m and 3.5 A m. These are the highest reported for microfluidic MFCs using pure culture bacteria, which advances the goal of competing with mainstream MFC formats.
最近,在微生物燃料电池(MFC)的微流控领域出现了一种趋势,即不使用分离膜,而是依靠层流物理原理来保持阳极和阴极隔室之间的隔离。为了避免溶液交叉,电极之间的距离可能需要几毫米,但这会增加内阻,从而破坏微尺度 MFC 的一个主要优势。因此,我们提出了一种简便的方法来合成支持亚毫米电极间距的微膜。膜的合成降低了器件制造的复杂性,并且所提出的设计在其合成过程中避免了电极污染。与具有 6 毫米电极间距的最先进的无膜 MFC 相比,在可比的流动条件下,亚毫米膜 MFC 的内阻降低了 60%,功率和电流密度分别提高了 45%和 290%,并且乙酸盐转化率提高了 8 倍。增强的流动稳定性在不平衡流动条件下提供了稳定的运行,并在流量增加 100 倍的情况下,将功率密度连续提高了 30%。结果,获得的最大功率输出为 660 mW m 和 3.5 A m。这是使用纯培养细菌的微流控 MFC 中报告的最高值,这推进了与主流 MFC 格式竞争的目标。