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Turning harmful algal biomass to electricity by microbial fuel cell: a sustainable approach for waste management

机译:通过微生物燃料电池转向有害的藻类生物量:废物管理的可持续方法

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Effective utilization of harmful algal biomass from eutrophic lakes is required for sustainable waste management and circular bioeconomy. In this study, Microcystis aeruginosa derived biomass served as an electron donor in the microbial fuel cell (MFC) for waste treatment and electricity generation. Bioelectrochemical performance of MFC fed with microalgae (MFC-algae) was compared with MFC fed with a commercial substrate (MFC-acetate). Complete removal of microcystin-LR (MC-LR) and high chemical oxygen demand (COD) removal efficiency (67.5 ± 1 %) in MFC-algae showed that harmful algal biomass could be converted into bioelectricity. Polarization curves revealed that MFC-algae delivered the maximum power density (83 mW/m~2) and current density (672 mA/m~2), which was 43% and 45% higher than those of MFC-acetate, respectively. Improved electrochemical performance and substantial coulombic efficiency (7.6%) also verified the potential use of harmful algal biomass as an alternate MFC substrate. Diverse microbial community profiles showed the substrate-dependent electrogenic activities in each MFC. Biodegradation pathway of MC-LR by anodic microbes was also explored in detail. Briefly, a sustainable approach for on-site waste management of harmful algal biomass was presented, which was deprived of transportation and special pretreatments. It is anticipated that current findings will help to pave the way for practical applications of MFC technology.
机译:可持续废物管理和循环生物经济需要从富营养湖中有效利用来自富营养湖泊的有害藻类生物量。在本研究中,微囊杆菌铜绿假单胞菌衍生的生物量作为用于废物处理和发电的微生物燃料电池(MFC)中的电子给体。将MFC的生物电化学性能与微藻(MFC-藻类)加入的MFC(MFC-藻类)与用商业基质(MFC-乙酸盐)喂养的MFC进行比较。完全除去MFC-藻类中的微囊杆菌 - LR(MC-LR)和高化学需氧量(COD)去除效率(67.5±1%)显示有害的藻类生物量可以转化为生物电性。偏振曲线显示,MFC-藻类输送了最大功率密度(83mW / m〜2)和电流密度(672mA / m〜2),分别比MFC-乙酸盐的43%和45%高。改进的电化学性能和大量的库仑效率(7.6%)还验证了有害藻类生物量作为交替MFC衬底的潜在使用。不同的微生物群落型材在每个MFC中显示出基质依赖的电气活性。还探讨了阳极微生物的MC-LR的生物降解途径。简而言之,提出了一种有害藻类生物量的现场废物管理的可持续方法,被剥夺了运输和特殊预处理。预计目前的调查结果将有助于为MFC技术的实际应用铺平道路。

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    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

    Research Center for Eco-environmental Sciences Chinese Academy of Sciences 18 Shuangqing Road Beijing 100085 PR China;

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