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Microbiological aspects of thermophile pretreatment of activated sludge inhibiting electricity generation of microbial fuel cell

机译:活性污泥抑制发电的微生物预处理微生物抑制微生物燃料电池的微生物方面

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摘要

Thermophile pretreatment of activated sludge greatly improves the biodegradability of sludge, but whether the pretreated products are suitable for the electricity generation of microbial fuel cells (MFCs) is still little known. In this study, municipal activated sludge pretreated by a thermophilic bacterium and heating, respectively, was separately fed into the MFCs. The performance of MFCs was examined and changes of anodic microbial communities were investigated with scanning electron microscopy and 16S rRNA gene high-throughput sequencing on the Illumina Miseq platform. The results showed that MFCs fed with heating-pretreated sludge performed preferably and the power density reached 0.91-2.86 W/m(3). MFC anodes were covered with considerable Geobacter spp. However, the bioaugmentation of sludge with the thermophile was not able to support a high potential output although the pretreatment significantly increased the soluble chemical oxygen demand. The maximum power density approached 0.20 W/m(3) even when the anolyte was regularly changed. It was observed that amending pH did not improve the performance of MFC. Investigation on this anodic microbial community found that the relative abundance of Lactobacillus spp. exceeded 91%. Consequently, the thermophile-pretreated products stimulated the growth of non-exoelectrogens and finally the niches of anodic biofilm were completely occupied by Lactobacillus spp.
机译:热敏污泥的嗜热预处理大大提高了污泥的生物降解性,但预处理产品是否适合于微生物燃料电池(MFC)的发电仍然众所周知。在本研究中,分别通过热嗜热细菌和加热预处理的城市活性污泥分别送入MFC。研究了MFCs的性能,并在Illumina Miseq平台上研究了扫描电子显微镜和16S rRNA基因高通量测序的阳极微生物群落的变化。结果表明,优选地进行加热预处理污泥的MFC,功率密度达到0.91-2.86W / m(3)。 MFC阳极覆盖有相当大的Geobacter SPP。然而,尽管预处理显着提高了可溶性化学需氧量,但污泥的生物沉积不能够支持高潜在的产量。即使经常改变阳极氧化物,最大功率密度也接近0.20W / m(3)。观察到修改pH没有提高MFC的性能。对该阳极微生物群落的研究发现乳杆菌SPP的相对丰度。超过91%。因此,嗜热预处理产品刺激了非exooLogens的生长,最后通过乳杆菌SPP完全占据阳极生物膜的耐药物。

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