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Electricity generation through a photo sediment microbial fuel cell using algae at the cathode

机译:通过在阴极处使用藻类的照片沉积物微生物燃料电池发电

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Sediment microbial fuel cells (SMFCs) are bio-electrochemical devices generating electricity from redox gradients occurring across the sediment-water interface. Sediment microbial carbon-capture cell (SMCC), a modified SMFC, uses algae grown in the overlying water of sediment and is considered as a promising system for power generation along with algal cultivation. In this study, the performance of SMCC and SMFC was evaluated in terms of power generation, dissolved oxygen variations, sediment organic matter removal and algal growth. SMCC gave a maximum power density of 22.19 mW/m(2), which was 3.65 times higher than the SMFC operated under similar conditions. Sediment organic matter removal efficiencies of 77.6 +/- 2.1% and 61.0 +/- 1.3% were obtained in SMCC and SMFC, respectively. With presence of algae at the cathode, a maximum chemical oxygen demand and total nitrogen removal efficiencies of 63.3 +/- 2.3% (8th day) and 81.6 +/- 1.2% (10th day), respectively, were observed. The system appears to be favorable from a resources utilization perspective as it does not depend on external aeration or membranes and utilizes algae and organic matter present in sediment for power generation. Thus, SMCC has proven its applicability for installation in an existing oxidation pond for sediment remediation, algae growth, carbon conversion and power generation, simultaneously.
机译:沉积物微生物燃料电池(SMFC)是生物电化学装置,从沉积物 - 水界面发生的氧化还原梯度产生电力。沉积物微生物碳捕获细胞(SMCC),一种改性SMFC,使用沉积物上覆盖水中生长的藻类,被认为是具有藻类栽培的发电的有希望的系统。在这项研究中,在发电,溶解的氧气变化,沉积物有机物去除和藻类生长方面评价SMCC和SMFC的性能。 SMCC发出了22.19 MW / m(2)的最大功率密度,比在类似条件下运行的SMFC高3.65倍。 SMCC和SMFC分别在SMC和SMFC中获得77.6 +/- 2.1%和61.0 +/- 1.3%的沉积物有机物质去除效率。在阴极存在下存在藻类,分别观察到最大化学需氧量和总氮去除效率,分别为63.3 +/- 2.3%(第8天)和81.6 +/- 1.2%(第10天)。该系统似乎有利于资源利用率视角,因为它不依赖于外部通气或膜,并利用存在于沉积物中存在的藻类和有机物质。因此,SMCC已证明其在现有的氧化池中安装适用性,用于同时进行沉积物修复,藻类生长,碳转换和发电。

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