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Impact of granular filtration on ultrafiltration membrane performance as pre-treatment to seawater desalination in presence of algal blooms

机译:颗粒过滤对藻类盛开的存在于海水淡化的预处理中的影响

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摘要

To mitigate fouling of the ultrafiltration (UF) membrane and improve permeate quality, we coupled granular filters (GF) with UF membrane as a pre-treatment for reconstituted seawater in the presence of algal bloom. Mono and bilayer granular filtrations were led at a mean velocity of 10 m h−1 over a 7-hour period. Both GF gave the same algal cell retention rate (∼63%) after 7 hours of filtration. Turbidity reduction rate was 50% for the monolayer filter and 75% for the bilayer filter. Resulting organic matter removal rate was 10% for the monolayer filter and 35% for the bilayer filter. Dissolved organic carbon removal was low (20%) with the bilayer filter and non-existent with the monolayer filter. GF-coupled UF reduced humic acids in the permeate (20%) compared with UF alone. Peak pressure of 3 bars was reached at the end of 30 minutes of UF in both direct UF or UF after monolayer GF. The filtrate from the bilayer GF enables UF over a longer period (7 hours).
机译:为了减轻超滤(UF)膜的污垢,提高渗透物质,我们将颗粒过滤器(GF)与UF膜相结合,作为藻类盛开存在的重构海水的预处理。在7小时内以10m H-1的平均速度,单层和双层颗粒过滤在7小时内。在过滤7小时后,两个GF在7小时后给出了相同的藻类细胞保留率(〜63%)。单层过滤器的浊度降低率为50%,双层过滤器为75%。对于单层过滤器,得到的有机物质去除率为10%,双层过滤器为35%。溶解的有机碳除去用双层过滤器和单层过滤器不存在的低(20%)。仅与UF单独相比,GF耦合UF在渗透物中减少渗透物(20%)的腐殖酸。在单层GF之后在直接UF或UF中,在UF的30分钟结束时达到3巴的峰值压力。来自双层GF的滤液使UF能够超过更长的时间(7小时)。

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