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Denitrification performance of Pseudomonas fluorescens Z03 immobilized by graphene oxide-modified polyvinyl-alcohol and sodium alginate gel beads at low temperature

机译:通过石墨烯氧化物改性的聚乙烯醇和藻酸钠凝胶珠粒固定的假单胞菌荧光Z03的脱氮性能在低温下

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Improving the effect of microbial denitrification under low-temperature conditions has been a popular focus of research in recent years. In this study, graphene oxide (GO)-modified polyvinyl-alcohol (PVA) and sodium alginate (SA) (GO/PVA–SA) gel beads were used as a heterotrophic nitrification–aerobic denitrification (HN–AD) bacteria ( Pseudomonas fluorescens Z03) carrier to enhance nitrogen removal efficiency levels at low temperatures (6–8°C). The removal efficiency of N H 4 -N and N O 3 ? -N and the variations in concentrations of extracellular polymeric substances (EPS) under different GO doses (0.03–0.15 g l ?1 ) were studied. The results indicated that the addition of GO can improve the efficiency of nitrogen removal, and the highest removal efficiency level and highest carbohydrate, protein, and total EPS content levels (50.28 mg, 132.78 mg and 183.06 mg (g GO/PVA–SA gel) ?1 , respectively) were obtained with 0.15 g l ?1 GO. The simplified Monod model accurately predicted the nitrogen removal efficiency level. These findings suggested that the application of GO serves as an effective means to enhance nitrogen removal by stimulating the activity of HN–AD bacteria.
机译:在低温条件下提高微生物反硝化的影响是近年来研究的流行焦点。在该研究中,使用石墨烯(GO)制乙烯醇 - 醇(PVA)和藻酸钠(SA)(GO / PVA-SA)凝胶珠作为异养硝化 - 有氧脱氮(HN-AD)细菌(假单胞菌荧光Z03)载体以增强低温下的氮去除效率水平(6-8°C)。 N H 4-N和N 3的去除效率? -N和在不同GO剂量下的细胞外聚合物物质(EPS)的浓度的变化进行了研究(0.03-0.15gl≥1)。结果表明,添加的添加可以提高氮去除的效率,以及最高的去除效率水平和最高的碳水化合物,蛋白质和总EPS含量水平(50.28mg,132.78mg和183.06mg(g Go / PVA-SA凝胶) )?分别使用0.15 glα1获得。简化的Monod模型精确地预测了氮气去除效率水平。这些发现表明,去的应用是通过刺激HN-AD细菌的活性来增强氮气去除的有效方法。

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