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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Enhanced desalination process using a Cu-ZnO-polyvinyl chloride-nylon nanofiltration membrane as a calcite antiscalant in reverse osmosis
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Enhanced desalination process using a Cu-ZnO-polyvinyl chloride-nylon nanofiltration membrane as a calcite antiscalant in reverse osmosis

机译:使用Cu-ZnO-聚氯乙烯 - 尼龙纳米过滤膜的增强脱盐过程作为反渗透的方解石抗央气剂

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摘要

Treatment and cleaning of reverse osmosis (RO) membranes saturated with CaCO3/brine is a main issue in RO desalination processes. Herein, a Cu-ZnO-polyvinyl chloride (PVC)-nylon nanofiltration membrane was synthesized and utilized to minimize and/or eliminate CaCO3/brine during RO, along with probing the effects of Cu-ZnO antiscalant on calcite precipitation in normal aqueous and supersaturated CaCO3/brine solutions. Moreover, decreases in Ca2+ content over time were evaluated by electrical conductivity and pH measurements. Results revealed that Cu-ZnO nanocomposite substantially increases induction time and stimulates the formation of aragonite rather than calcite. A 2 mg/L dose of Cu-ZnO nanocomposite suppressed CaCO3 in both unsaturated and supersaturated solutions. In natural water sources (containing similar to 500 mg/L calcium and approximate to 300 mg/L bicarbonate content), complete removal of CaCO3 blockage was achieved by using 2.5 mg/L of Cu-ZnO antiscalant, while in supersaturated water solutions (1000 mg/L calcium and approximate to 500 mg/L bicarbonate content), only 2 mg/L of Cu-ZnO antiscalant was required to fully remove the blockage. Importantly, addition of 2 mg/L of Cu-ZnO antiscalant to RO brine showed no apparent deposition on the membrane surface after 6 h, with a minimal flux decrease to 86.5%. Thus, Cu-ZnO-PVC-nylon nanofiltration membranes with low concentrations (2 mg/L) of Cu-ZnO antiscalant can play a significant role in the treatment of supersaturated CaCO3/brine water discharge.
机译:用CaCO 3 /盐水饱和的反渗透(RO)膜的处理和清洁是RO脱盐过程中的主要问题。在此,合成Cu-ZnO-聚氯乙烯(PVC) - 纳米滤膜,并利用RO期间最小化和/或消除CaCO 3 /盐水,以及探测Cu-Zno antiScalant对正常水性和超饱和的方解石沉淀的影响Caco3 /盐水溶液。此外,通过电导率和pH测量来评估Ca2 +含量随时间的降低。结果表明,Cu-ZnO纳米复合材料基本上增加了诱导时间并刺激了化石的形成而不是方解石。在不饱和和过饱和溶液中,2mg / L含量的Cu-ZnO纳米复合材料抑制CaCO 3。在天然水源(含有类似于500mg / L钙和近似碳酸氢盐含量)中,通过使用2.5mg / L的Cu-ZnO抗央气溶液,在超饱和水溶液中完成CaCO3堵塞的完全除去(1000 Mg / L钙和近似500mg / L碳酸氢盐含量),需要2mg / L的Cu-ZnO抗央气剂来完全去除堵塞。重要的是,在6小时后,向RO盐水中添加2mg / L的Cu-ZnO抗静脉对RO盐水显示出在膜表面上的表观沉积,最小磁通量降低至86.5%。因此,具有低浓度(2mg / L)的Cu-ZnO抗央剂的Cu-ZnO-PVC-尼龙纳米滤膜可以在过饱和CaCO 3 /盐水排放的处理中发挥重要作用。

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