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Fe 3 O 4 /granular activated carbon as an efficient three-dimensional electrode to enhance the microbial electrosynthesis of acetate from CO 2 .

Hao ZhuZhiwei DongQiong HuangTian-Shun SongTian-Shun Song
Published in: RSC advances (2019)
Microbial electrosynthesis (MES) allows the transformation of CO 2 into value-added products by coupling with renewable energy. The enhancement in the microbial activity and electron transfer rate via a new electrode modification method is essential for developing MES. Here, three groups of granular activated carbon decorated by Fe 3 O 4 (Fe 3 O 4 /GAC) with mass fractions of 23%, 38% and 50% were prepared and compared with bare GAC. The volumetric acetate production rate of MES with Fe 3 O 4 /GAC-38% was the highest (0.171 g L -1 d -1 ), which was 1.4 times higher that of the control (bare GAC), and the final acetate concentration reached 5.14 g L -1 within 30 days. Linear sweep voltammetry and microbial community analyses suggested that Fe 3 O 4 /GAC facilitates extracellular electron transfer and improves the enrichment of electrochemically active bacteria. Fe 3 O 4 /GAC is an effective three-dimensional electrode material that enhances biofilm activity on GAC and improves MES efficiency.
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