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Ozone Chemically Enhanced Backwash for Ceramic Membrane Fouling Control in Cyanobacteria-Laden Water

机译:臭氧化学增强的陶瓷膜污染对抗陶瓷膜污染物的反冲洗

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摘要

Membrane fouling in surface waters impacted by cyanobacteria is currently poorly controlled and results in high operating costs. A chemically enhanced backwash (CEB) is one possible strategy to mitigate cyanobacteria fouling. This research investigates the potential of using an ozone CEB to control the fouling caused by Microcystis aeruginosa in filtered surface water on a ceramic ultrafiltration membrane. Batch ozonation tests and dead-end, continuous flow experiments were conducted with ozone doses between 0 and 19 mg O3/mg carbon. In all tests, the ozone was shown to react more rapidly with the filtered surface water foulants than with cyanobacteria. In addition, the ozone CEB demonstrated an improved mitigation of irreversible fouling over 2 cycles versus a single CEB cycle; indicating that the ozone CEB functioned better as the cake layer developed. Ozone likely weakens the compressible cake layer formed by cyanobacteria on the membrane surface during filtration, which then becomes more hydraulically reversible. In fact, the ozone CEB reduced the fouling resistance by 35% more than the hydraulic backwash when the cake was more compressed.
机译:受蓝藻撞击的表面水域中的膜污染目前是较低的控制并导致高运营成本。化学增强的反冲洗(CEB)是减轻蓝藻污垢的一种可能策略。本研究研究了使用臭氧CEB的潜力,以控制陶瓷超滤膜上过滤的地表水中的微囊静脉铜绿假单胞菌引起的污垢。批量臭氧试验和死端,连续流动实验以0至19mg O 3 / Mg碳的臭氧剂量进行。在所有测试中,显示臭氧与过滤的表面水污垢比用蓝藻,臭氧更快地反应。此外,臭氧CEB证明了改进的不可逆污染超过2个循环与单个CEB循环;表明臭氧CEB在开发的蛋糕层时更好地运行。臭氧可能削弱在过滤期间膜表面上的蓝细菌形成的可压缩饼层,然后变得更加柔软的可逆。事实上,当滤饼更压缩时,臭氧CEB比液压反冲洗的污垢阻力减少了35%。

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