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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Characteristics of algogenic organic matter generated under different nutrient conditions and subsequent impact on microfiltration membrane fouling
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Characteristics of algogenic organic matter generated under different nutrient conditions and subsequent impact on microfiltration membrane fouling

机译:不同养分条件下产生的成藻有机质特征及其对微滤膜结垢的影响

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摘要

This work investigated the characteristics of algogenic organic matter (AOM) that was produced by blue-green algae grown under different nitrogen to phosphorus ratios (1N:1P, 1N:2P, 1N:10P, 2N:1P). Subsequently, the potential for AOM microfiltration (MF) membrane fouling under these scenarios was evaluated. The results showed that algae grew differently under various N/P ratios. Microcystis aeruginosa in 1N:10P and 1N:2P grew much better than those in 1N:1P. When constant phosphorous concentrations were maintained, no obvious effect was observed on the accumulation of algal intracellular organic matter. The amount of AOM released from M. aeruginosa was also affected by the N/P. AOM fraction analysis showed that the neutral hydrophilic fraction (N-HPI) was the main component of AOM; with lower N/P ratios, the proportion of hydrophilic AOM increased. Moreover, molecular weight (MW) distribution discrepancies existed among different AOMs. MF membrane fouling by AOM may also be influenced by N/P variations. AOM at 1N:10P exerted the strongest impact on membrane fouling, followed sequentially by 1N:2P, 1N:1P and 2N:1P. According to the analysis of the excitation-emission matrices (EEMs) and the MW distribution of membrane filtration, the membrane fouling potential of AOM seemed to be mainly associated with polysaccharide-like or protein-like substances of large MW.
机译:这项工作研究了在不同氮磷比(1N:1P,1N:2P,1N:10P,2N:1P)下生长的蓝绿藻产生的藻源性有机物(AOM)的特征。随后,评估了在这些情况下AOM微滤(MF)膜结垢的可能性。结果表明,藻类在不同的氮磷比下生长不同。 1N:10P和1N:2P中的铜绿微囊藻比1N:1P中的铜绿微囊藻生长好得多。当维持恒定的磷浓度时,没有观察到藻类细胞内有机物积累的明显影响。铜绿假单胞菌释放的AOM量也受N / P影响。 AOM馏分分析表明,中性亲水组分(N-HPI)是AOM的主要成分。 N / P值越低,亲水性AOM的比例越高。此外,不同AOM之间存在分子量(MW)分布差异。 AOM对MF膜的污染也可能受N / P变化的影响。 1N:10P的AOM对膜结垢的影响最大,其后依次是1N:2P,1N:1P和2N:1P。根据激发-发射矩阵(EEM)和膜过滤的MW分布的分析,AOM的膜污染潜力似乎主要与大MW的多糖样或蛋白样物质有关。

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