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Chemical-free scale inhibition method for seawater reverse osmosis membrane process: Air micro-nano bubbles

机译:海水反渗透膜过程的无化学尺度抑制方法:空气微纳米泡沫

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One of the major problems of seawater reverse osmosis (SWRO) process is the formation of inorganic scales (calcium carbonate, CaCO3) and calcium sulfate, CaSO4)) on the membrane surface, which degrades the filtration performance. Antiscalants have been applied to SWRO plants to overcome the scaling problem. In this study, we used the air micro-nano bubbles (MNBs) as a chemical-free scale inhibition method to improve the overall membrane performance in the comparison with the commercially available antiscalants. During four days of continuous experiments with MNBs, the permeate fluxes declined to 86.5(0.4)% and 83.0(0.5)% with CaCO3 and CaSO4 containing feed solutions, respectively. These values were higher than those obtained with the use of antiscalants in the feed water (CaCO3-63.5(0.4)% and CaSO4-55.8(1.0)%). Membrane fouling characterization results showed that the MNBs efficiently controlled the scaling development on the membrane surface without any chemical addition.
机译:海水反渗透(SWRO)工艺的主要问题之一是在膜表面上形成无机鳞片(碳酸钙,CaCO 3)和硫酸钙,CasO4),其降低过滤性能。 抗央气剂已应用于Swro植物以克服缩放问题。 在这项研究中,我们使用空气微纳米泡泡(MNB)作为无化学尺度抑制方法,以改善与市售的抗央剂的比较中的整体膜性能。 在用MNB的连续实验的四天内,渗透助焊剂分别下降至86.5(0.4)%和83.0(0.5)%,CaCO 3和CasO4含有进料溶液。 这些值高于使用进料水中的抗央气剂(CaCO 3-63.5(0.4)%和CasO4-55.8(1.0)%)获得的值高于那些。 膜污染表征结果表明,MNBS有效地控制膜表面上的缩放显现,没有任何化学添加。

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