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The effects of feed water de-gassing on the permeate flux of a small scale SWRO pilot plant

机译:给水除气对小型SWRO中试设备渗透通量的影响

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The effects of pressure release on feed water cavitation have been studied using a small pilot scale SWRO system. The presence of dissolved atmospheric gases in seawater leads to a potential for cavitation within the porous membranes used in high pressure processes. The rapid application and release of applied pressures in the range of 10-60 atm was found to cause visible cavitation throughout the bulk solution phase. This phenomenon was not related to increased gas solubility under the applied pressure, since no additional gases were allowed into the system. It was found that almost complete removal of the initial dissolved atmospheric gases prevented this cavitation. Earlier laboratory scale studies had reported that removal of cavitation by feed water de-gassing enhanced permeate flow rates by 3-5% but this level of improvement was not observed in the pilot scale study operating at an applied pressure of 38 atm with seawater feed. It is possible that larger effects may be observed with the use of more hydrophobic membranes and at higher working pressures. Pre-heating seawater feed to enhance RO efficiency may also lead to greater cavitation within the RO membrane. This study has also demonstrated that pre-treatment using hollow-fibre membranes with efficient vacuum pumping systems can readily produce a high flow rate of 99.5% degassed seawater. Feed water de-gassing at these high levels also has the advantage of reducing both inorganic and biological fouling and reduces oxidative degradation of the polymeric membranes.
机译:已经使用小型中试SWRO系统研究了压力释放对给水汽蚀的影响。海水中溶解的大气气体的存在导致在高压工艺中使用的多孔膜内发生气蚀的可能性。发现在10-60atm范围内的快速施加和释放的施加压力在整个本体溶液相中引起可见的气蚀。这种现象与施加压力下气体溶解度的增加无关,因为不允许有其他气体进入系统。发现几乎完全除去了最初溶解的大气气体可以防止这种气蚀。较早的实验室规模研究报告说,通过给水除气来消除气穴现象可使渗透液流速提高3-5%,但在规模为38atm的海水压力下进行的中试规模研究中未观察到这种改善水平。使用更多的疏水膜和更高的工作压力可能会观察到更大的效果。预热海水进料以提高反渗透效率也可能导致反渗透膜内出现更大的空化现象。这项研究还表明,使用中空纤维膜和有效的真空泵系统进行预处理可以很容易地产生高达99.5%脱气海水的高流速。在这些高水平下给水除气还具有减少无机和生物结垢并减少聚合物膜的氧化降解的优点。

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