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Influences of light and oxygen conditions on photosynthetic bacteria macromolecule degradation: Different metabolic pathways

机译:光和氧条件对光合细菌大分子降解的影响:不同的代谢途径

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摘要

Direct degradation of macromolecules by photosynthetic bacteria (PSB) is important for the industrial application of PSB wastewater treatment. Light and oxygen are the most important parameters in PSB growth. This paper studied the PSB macromolecule degradation process under three different light and oxygen conditions: light-anaerobic, natural light-microaerobic and dark-aerobic. The results showed that under three different light-oxygen conditions, PSB degradation of macromolecules was higher than 90%; the removal ratios of COD, TN, TP, total sugar and protein were also high; and the biomass yield reached nearly 0.5. mg-biomass/mg-COD-removal. Light and oxygen significantly influenced the efficiency. Macromolecules and pollutants removals were higher under oxygen condition than those under light-anaerobic condition. Theoretical analysis showed that under aerobic condition, PSB carried out oxidative phosphorylation, in which pollutants were sufficiently utilized with high mineralization degree. Under light-anaerobic condition, PSB carried out photophosphorylation and fermentation, which led to low pollutants removal efficiency.
机译:光合细菌(PSB)直接降解大分子对于PSB废水处理的工业应用很重要。光和氧是PSB生长中最重要的参数。本文研究了在三种不同的光照和氧气条件下PSB高分子的降解过程:轻厌氧,自然轻微需氧和暗需氧。结果表明,在三种不同的光氧条件下,大分子的PSB降解率均高于90%。 COD,TN,TP,总糖和蛋白质的去除率也很高。生物量产量接近0.5。毫克生物质/毫克COD去除量。光和氧气显着影响效率。在氧气条件下,大分子和污染物的去除要高于在轻厌氧条件下的大分子和污染物的去除。理论分析表明,在有氧条件下,PSB进行了氧化磷酸化作用,其中污染物得到了充分利用,矿化​​度很高。 PSB在轻度厌氧条件下进行光磷酸化和发酵,导致污染物去除效率低。

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