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Microbial fuel cells for sulfide removal

机译:用于去除硫化物的微生物燃料电池

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Thus far, microbial fuel cells (MFCs) have been used to convert carbon-based substrates to electricity. However, sulfur compounds are ubiquitously present in organic waste and wastewater. In this study, a MFC with a hexacyanoferrate cathodic electrolyte was used to convert dissolved sulfide to elemental sulfur. Two types of MFCs were used, a square type closed to the air and a tubular type in which the cathode compartment was open to the air. The square- type MFCs demonstrated a potential- dependent conversion of sulfide to sulfur. In the tubular system, up to 514 mg sulfide L-1 net anodic compartment (NAC) day(-1) (241 mg L-1 day(-1) total anodic compartment, TAC) was removed. The sulfide oxidation in the anodic compartment resulted in electricity generation with power outputs up to 101 mW L-1 NAC (47 W m(-3) TAC). Microbial fuel cells were coupled to an anaerobic upflow anaerobic sludge blanket reactor, providing total removals of up to 98% and 46% of the sulfide and acetate, respectively. The MFCs were capable of simultaneously removing sulfate via sulfide. This demonstrates that digester effluents can be polished by a MFC for both residual carbon and sulfur compounds. The recovery of electrons from sulfides implies a recovery of energy otherwise lost in the methane digester.
机译:迄今为止,微生物燃料电池(MFC)已被用于将碳基基材转化为电能。但是,有机废物和废水中普遍存在硫化合物。在这项研究中,使用带有六氰基铁酸盐阴极电解质的MFC将溶解的硫化物转化为元素硫。使用了两种类型的MFC,一种是对空气封闭的方形型,另一种是阴极室对空气开放的管状型。方形MFCs证明了硫化物向硫的电势转换。在管状系统中,去除了最多514 mg硫化物L-1净阳极室(NAC)day(-1)(241 mg L-1 day(-1)总阳极室,TAC)。阳极室中的硫化物氧化导致发电,输出功率高达101 mW L-1 NAC(47 W m(-3)TAC)。微生物燃料电池与厌氧上流厌氧污泥层反应器相连,分别提供了高达98%和46%的硫化物和乙酸盐总去除率。 MFC能够同时通过硫化物去除硫酸盐。这表明沼气池废液可以通过MFC进行抛光,以去除残留的碳和硫化合物。从硫化物中回收电子意味着回收甲烷消化器中原本会损失的能量。

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