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Influence of Al(Ⅲ) on biofilm and its extracellular polymeric substances in sequencing batch biofilm reactors

机译:分批生物膜反应器中Al(Ⅲ)对生物膜及其细胞外聚合物的影响

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摘要

This paper presented the influence of Al(III) on biodegradability, micromorphology, composition and functional groups characteristics of the biofilm extracellular polymeric substances (EPS) during different growth phases. The sequencing batch biofilm reactors were developed to cultivate biofilms under different Al(III) dosages. The results elucidated that Al(III) affected biofilm development adversely at the beginning of biofilm growth, but promoted the biofilm mass and improved the biofilm activity with the growth of the biofilm. The micromorphological observation indicated that Al(III) led to a reduction of the filaments and promotion of the EPS secretion in growth phases of the biofilm, also Al(III) could promote microorganisms to form larger colonies for mature biofilm. Then, the analysis of EPS contents and components suggested that Al(III) could increase the protein (PN) of tightly bound EPS (TB-EPS) which alleviated the metal toxicity inhibition on the biofilm during the initial phases of biofilm growth. The biofilm could gradually adapt to the inhibition caused by Al(III) at the biofilm maturation moment. Finally, through the Fourier transform infrared spectroscopy, it was found that Al(III) was beneficial for the proliferation and secretion of TB-EPS functional groups, especially the functional groups of protein and polysaccharides.
机译:本文介绍了Al(III)在不同生长阶段对生物膜细胞外聚合物(EPS)的生物降解性,微观形态,组成和官能团特性的影响。开发了测序分批生物膜反应器,以在不同Al(III)剂量下培养生物膜。结果表明,Al(III)在生物膜生长开始时会对生物膜的发育产生不利影响,但随着生物膜的生长,促进了生物膜的质量并提高了生物膜的活性。微观形态学观察表明,Al(III)导致细丝减少,并促进了生物膜生长期的EPS分泌,Al(III)还可促进微生物形成较大的菌落,形成成熟的生物膜。然后,对EPS含量和成分的分析表明,Al(III)可以增加紧密结合的EPS(TB-EPS)的蛋白质(PN),从而减轻了生物膜生长初期对金属膜的金属毒性抑制作用。在生物膜成熟的时刻,生物膜可以逐渐适应由Al(III)引起的抑制作用。最后,通过傅立叶变换红外光谱法,发现Al(III)对TB-EPS官能团,特别是蛋白质和多糖的官能团的增殖和分泌是有益的。

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