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Capacitive deionization coupled with microbial fuel cells to desalinate low-concentration salt water

机译:电容去离子与微生物燃料电池结合以淡化低浓度盐水

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摘要

A new technology (CDI-MFC) that combined capacitive deionization (CDI) and microbial fuel cell (MFC) was developed to treat low-concentration salt water with NaCl concentration of 60. mg/L. The water desalination rate was 35.6. mg/(L. h), meanwhile the charge efficiency was 21.8%. Two desorption modes were investigated: discharging (DC) mode and short circuit (SC) mode. The desalination rate in the DC mode was 200.6. ±. 3.1. mg/(L. h), 47.8% higher than that in the SC mode [135.7. ±. 15.3. mg/(L. h)]. The average current in the DC mode was also much higher than that of the SC mode. The energy stored in the CDI cell has been reused to enhance the electron production of MFC by the discharging desorption mode (DC mode), which offers an approach to recover the electrostatic energy in the CDI cell.
机译:结合电容去离子(CDI)和微生物燃料电池(MFC)的新技术(CDI-MFC)得以开发,用于处理NaCl浓度为60. mg / L的低浓度盐水。水脱盐率为35.6。 mg /(L。h),同时充电效率为21.8%。研究了两种解吸模式:放电(DC)模式和短路(SC)模式。 DC模式下的脱盐率为200.6。 ±。 3.1。 mg /(L。h),比SC模式下高47.8%[135.7。 ±。 15.3。 mg /(L。h)]。 DC模式下的平均电流也比SC模式下的平均电流高得多。存储在CDI电池中的能量已被重新利用,以通过放电解吸模式(DC模式)提高MFC的电子产量,这提供了一种回收CDI电池中静电能的方法。

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