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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Nitrate as an oxidant in the cathode chamber of a microbial fuel cell for both power generation and nutrient removal purposes
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Nitrate as an oxidant in the cathode chamber of a microbial fuel cell for both power generation and nutrient removal purposes

机译:硝酸盐作为微生物燃料电池阴极室中的氧化剂,用于发电和营养去除

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Nitrate ions were used as the oxidant in the cathode chamber of a microbial fuel cell (MFC) to generate electricity from organic compounds with simultaneous nitrate removal. The MFC using nitrate as oxidant could generate a voltage of 111 mV (1,000 Ω) with a plain carbon cathode. The maximum power density achieved was 7.2 mW m~(-2) with a 470 Ω resistor. Nitrate was reduced from an initial concentration of 49 to 25 mg (NO 3- -N) L-1 during 42-day operation. The daily removal rate was 0.57 mg (NO _3- -N) L~(-1) day~(-1) with a voltage generation of 96 mV. In the presence of Pt catalyst dispersed on cathode, the cell voltage was significantly increased up to 450 mV and the power density was 117.7 mW m~(-2), which was 16 times higher than the value without Pt catalyst. Significant nitrate removal was also observed with a daily removal rate of 2 mg (NO _3- -N) L~(-1) day ~(-1), which was 3.5 times higher compared with the operation without catalyst. Nitrate was reduced to nitrite and ammonia in the liquid phase at a ratio of 0.6% and 51.8% of the total nitrate amount. These results suggest that nitrate can be successfully used as an oxidant for power generation without aeration and also nitrate removal from water in MFC. However, control of the process would be needed to reduce nitrate to only nitrogen gas, and avoid further reduction to ammonia.
机译:硝酸根离子被用作微生物燃料电池(MFC)阴极室中的氧化剂,以从有机化合物中产生电能并同时去除硝酸盐。使用硝酸盐作为氧化剂的MFC可以使用纯碳阴极产生111 mV(1,000Ω)的电压。使用470Ω电阻可实现的最大功率密度为7.2 mW m〜(-2)。在42天的手术过程中,硝酸盐从最初的浓度49降低为25 mg(NO 3- -N)L-1。日去除率为0.57 mg(NO_3--N)L〜(-1)天〜(-1),产生电压为96 mV。在阴极上分散有Pt催化剂的情况下,电池电压显着增加到450 mV,功率密度为117.7 mW m〜(-2),是没有Pt催化剂时的16倍。还观察到硝酸盐的显着去除,其每日去除率为2 mg(NO_3--N)L〜(-1)天〜(-1),这是无催化剂操作的3.5倍。硝酸盐在液相中以硝酸盐总量的0.6%和51.8%的比例还原为亚硝酸盐和氨。这些结果表明,硝酸盐可以成功地用作发电的氧化剂而无需充气,也可以在MFC中从水中去除硝酸盐。但是,需要控制该过程以将硝酸盐仅还原为氮气,并避免进一步还原为氨。

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