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Use of filamentous fungi for improving electricity production and textile dye treatment in a microbial fuel cell

机译:丝状真菌在微生物燃料电池中改善发电和纺织品染料处理的用途

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摘要

Urban and industrial wastewaters have received an increased interest towards energy harvesting using microbial fuel cells (MFC). The combined use of microbial anode oxidizing organic substrates and enzymatic cathode reducing oxygen is a promising new approach for the simultaneous treatment of wastewater and generation of electricity. In this context, our study evaluated the performance of a two-chambered MFC operated with three laccase producing strains of filamentous fungi (Ff), immobilized on the cathodic compartment and filled up with simulated textile dye effluent (TDE) and urban wastewater in the anodic compartment. The result indicated a rapid TDE decolourisation (>86 % within 72 h). Electrochemical monitoring of the MFC during TDE decolourisation indicated power density (>35 mW m2, control 3,61) and laccase activity (989.6 U l–1) in the presence of Pleurotus ostreatus on the cathodic compartment. Considering the initial COD value of 464 ± 20 mg.l-1, the organic removal in the anodic compartment after 20 days of MFC operation was 90.2%. Final toxicity measurements in the TDE treated indicated a much lower impact when compared to the original TDE. These are the initial studies to select Ff as models for MFC application and further adaptation for wastewater treatment and bioelectricity generation
机译:城市和工业废水对使用微生物燃料电池(MFC)进行能量收集越来越感兴趣。微生物阳极氧化有机底物和酶促阴极还原氧的结合使用是一种有前途的新方法,可同时处理废水和发电。在这种情况下,我们的研究评估了使用三腔产生漆酶的丝状真菌(Ff)固定在阴极隔室上并填充模拟纺织品染料废水(TDE)和阳极城市废水的两腔MFC的性能。隔间。结果表明TDE快速脱色(72小时内> 86%)。在TDE脱色过程中对MFC进行的电化学监测表明,在阴极室中存在平菇的情况下,功率密度(> 35 mW m2,对照3,61)和漆酶活性(989.6 U 1-1)。考虑到初始COD值为464±20 mg.l-1,MFC操作20天后阳极室中的有机物去除率为90.2%。与原始TDE相比,经TDE处理的最终毒性测量结果显示影响要低得多。这些是选择Ff作为MFC应用模型并进一步适应废水处理和生物发电的模型的初步研究

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