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首页> 外文期刊>Water Research >Fouling mitigation by iron-based electroflocculation in microfiltration: Mechanisms and energy minimization
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Fouling mitigation by iron-based electroflocculation in microfiltration: Mechanisms and energy minimization

机译:铁基电絮凝在微滤中的结垢缓解:机理和能量最小化

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摘要

High-energy demand presents a major obstacle in the application of advanced water-purification systems. In this work, energy minimization and fouling mitigation by iron-based electroflocculation in dead-end microfiltration were investigated. Highly pure water contaminated with Silica-CMP (chemical mechanical polishing) particles were pretreated by electroflocculation at short operation times and a constant electrical current intensity of 0.4 A, followed by different slow-mixing times and filtration without any sedimentation step. By using a new method for filtration-energy appraisal, we found that an over 90% reduction in filtration energy could be achieved. The improvement was observed at all pH values examined (pH 6-8); pH values below 7 were problematic because the permeate turned yellow as a result of residual iron. The appearance of residual iron was explained by the dependence of Fe~(2+) to Fe~(3+) reaction rates on pH. Scanning electron micrographs of the fouled membrane surface showed the important role played by the sweep-coagulation mechanism in mitigating fouling. When internal fouling was the dominant mechanism, the amorphous iron-hydroxide solids formed a layer that filtered out the primary particles, protecting the membrane pores from plugging. Iron-hydroxide particles also reduced the hydraulic resistance of the cake when the external fouling mechanism dominated. Significant energy reduction was observed, even without the slow-mixing step, as a result of the local flocculation conditions near the membrane surface. Additional energy savings were obtained due to the significantly higher initial-flux restoration rates (>90%) resulting from electroflocculation pretreatment.
机译:高能需求是先进水净化系统应用的主要障碍。在这项工作中,研究了在末端微滤中通过铁基电絮凝实现的能量最小化和结垢缓解。在较短的操作时间和0.4 A的恒定电流强度下,通过电絮凝预处理了被Silica-CMP(化学机械抛光)颗粒污染的高纯水,然后进行了不同的慢速混合和过滤,没有任何沉淀步骤。通过使用一种新的过滤能量评估方法,我们发现可以将过滤能量降低90%以上。在所有检查的pH值(pH 6-8)下均观察到改善; pH值低于7是有问题的,因为由于残留铁,渗透物变成了黄色。 Fe〜(2+)对Fe〜(3+)反应速率与pH的关系解释了铁的残留。污垢膜表面的扫描电子显微照片显示,清扫凝结机制在减轻污垢中起着重要作用。当内部结垢是主要机理时,无定形氢氧化铁固体会形成一层滤出一次颗粒的层,从而防止膜孔堵塞。当外部结垢机理占主导地位时,氢氧化铁颗粒还降低了滤饼的水力阻力。由于膜表面附近的局部絮凝条件,即使没有慢速混合步骤,也观察到了显着的能量减少。由于电絮凝预处理的初始磁通恢复率(> 90%)显着提高,因此获得了更多的节能效果。

著录项

  • 来源
    《Water Research》 |2010年第13期|P.3973-3981|共9页
  • 作者

    Moshe Ben Sasson; Avner Adin;

  • 作者单位

    The Department of Soil and Water Sciences, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, P.O. Box 12, Rehovot 76100, Israel;

    rnThe Department of Soil and Water Sciences, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, P.O. Box 12, Rehovot 76100, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfiltration; electroflocculation; electrocoagulation; membrane fouling; iron coagulation; filtration energy;

    机译:微滤电絮凝;电凝膜结垢铁凝结;过滤能量;

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