Division of Environmental Engineering, Faculty of Engineering, Hokkaido University, North-13, West-8, Kita-ku, Sapporo, Hokkaido, 060-8628, Japan.
Sci Rep. 2020 Nov 4;10(1):18985. doi: 10.1038/s41598-020-75916-7.
Although microbial fuel cells (MFCs) can produce renewable energy from wastewater, the generated power is practically unusable. To extract usable power from an MFC fed with wastewater, we newly developed a low voltage booster multiplier (LVBM), which is composed of a self-oscillating LVB and multistage voltage multiplier circuits (VMCs). The low output MFC voltage (ca. 0.4 V) was successfully boosted up to 99 ± 2 V, which was the highest voltage that has been ever reported, without voltage reversal by connecting an LVB with 20-stage VMCs. Moreover, the boosted voltage (81 ± 1 V) was stably maintained for > 40 h even after disconnecting the LVBM from the MFC. The energy harvesting efficiency of LVBM was > 80% when an LVB with 4-stage VMCs was charged to 9.3 V. These results clearly suggest that the proposed LVBM system is an efficient and self-starting energy harvester and storage for low-power generating MFCs.
虽然微生物燃料电池 (MFC) 可以从废水中产生可再生能源,但产生的电量实际上无法使用。为了从以废水为食的 MFC 中提取可用功率,我们新开发了一种低电压升压倍增器 (LVBM),它由自激 LVB 和多级电压倍增器电路 (VMC) 组成。低输出 MFC 电压(约 0.4 V)成功升压至 99 ± 2 V,这是迄今为止报道的最高电压,通过将 LVB 与 20 级 VMC 连接,没有电压反转。此外,即使在将 LVBM 从 MFC 断开后,升压电压(81 ± 1 V)仍稳定保持> 40 h。当 4 级 VMC 的 LVB 充电至 9.3 V 时,LVBM 的能量收集效率> 80%。这些结果清楚地表明,所提出的 LVBM 系统是一种高效且自启动的能量收集器和存储装置,适用于低功率发电 MFC。