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首页> 外文期刊>Chemical engineering journal >Coupling a photosynthetic microbial fuel cell (PMFC) with photobioreactors (PBRs) for pollutant removal and bioenergy recovery from anaerobically digested effluent
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Coupling a photosynthetic microbial fuel cell (PMFC) with photobioreactors (PBRs) for pollutant removal and bioenergy recovery from anaerobically digested effluent

机译:用光生物反应器(PBRS)耦合光合微生物燃料电池(PMFC),用于从厌氧消化的流出物中去除和生物能量恢复

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Anaerobically digested effluent from food waste (ADE-FW) needs purification treatment due to its high content of ammonium and organic matter. Here, a system that couples a photosynthetic microbial fuel cell (PMFC) with photobioreactors (PBRs) was developed to recover energy from the ADE-FW. First, the ADE-FW was treated in the PMFC for pollutant removal and power generation. The highest power density obtained from the PMFC was about 3.5 W/m(3). Power generation was primarily affected by DO and substrate concentrations, which respectively determined the cathode and anode potentials. About 93% of the ammonium in the anolyte was removed in the continuous mode, owing to the ammonium migration effect. Algal biomass in the PMFC increased from 0.1 mg/L to 0.7 mg/L in the continuous mode, which was 27% higher than that in the batch operating mode (0.55 mg/L). Then the effluents from the cathodic chamber were polished in the PBRs. The nitrogen removal rates in the PBRs under continuous and batch operation were 3.0 mg/(L.d) and 1.8 mg/(L.d), respectively. In terms of energy production, more algal lipid energy was obtained in the continuous mode, but less electricity was obtained in this mode. Consequently, the total energy produced in the coupled systems in the continuous and batch modes were consistently about 1.8 kWh/m(3). The high pollutant removal rate and energy recovery efficiency of the coupled system indicated that it would be a practical technology for the industrial-scale applications.
机译:由于其高含量的铵和有机物质,食物废物(ADE-FW)的厌氧消化的流出物需要纯化处理。这里,开发了一种用光生物反应器(PBRS)耦合光合微生物燃料电池(PMFC)的系统以从ADE-FW回收能量。首先,在PMFC处理ADE-FW以进行污染物去除和发电。从PMFC获得的最高功率密度约为3.5W / m(3)。发电主要受DO和衬底浓度的影响,其分别确定了阴极和阳极电位。由于迁移效应,在连续模式下除去约93%的阳极物中的铵。 PMFC中的藻类生物量在连续模式下从0.1mg / L增加到0.7mg / L,比批量操作模式(0.55mg / L)高出27%。然后在PBRS中抛光来自阴极室的流出物。连续和分批操作下的PBR中的氮除去速率分别为3.0mg /(L.D)和1.8mg /(L.D)。就能量产生而言,在连续模式下获得了更多的藻类脂质能量,但在该模式下获得了较少的电力。因此,连续和分批模式中的偶联系统中产生的总能量始终为1.8千瓦时/ m(3)。耦合系统的高污染物去除率和能量回收效率表明它将是工业规模应用的实用技术。

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