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Inverted polarity micellar enhanced ultrafiltration for the treatment of heavy metal polluted wastewater

机译:反相极性胶束强化超滤处理重金属污染废水

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Membrane separation technologies are being applied with increasing frequency in the treatment of industrial and municipal wastewater,as a means of coping with increasingly stringent environmental regulations regarding waste-water discharge.In particular,the research work presented here is driven by the need to reduce the amount of heavy metals released into aquatic environments.Micellar enhanced ultrafiltration(MEUF)is a colloidal-based waste-water treatment process.The adsorptive capacity of the Stern layer of a large,anionic surfactant micelle is used to capture heavy metals ionsthe micelles are,in turn,trapped behind a polymeric ultrafiltration membrane.Experimental work has investigated the possibility of increasing the capture of pollutant ions,by collapsing the Stern and diffuse layer radii within the hydrodynamic diameter of micelles of sodium dodecyl sulphate.This involves bringing the micelles to a state of near-flocculation through the addition of multivalent ionsthese ions include aluminium,which is deliberately added as a flocculant ion,and the target heavy metal ions in solution,which are represented here by zinc.The near flocculation is achieved through the combination of surfactant,aluminium and zinc ion concentrations.The electrical triple-layer compression and near-flocculation of the micelle means that a greater fraction of the metal ions present in solution are dragged along with the micelle.The high porosity and permeability of the near-flocculated(or fully flocculated)micelles also reduces the tendency for gel formation,and thus fouling,on the ultrafiltration membrane surface.A combination of titration analysis and ultrafiltration experiments has investigated the relationship between the half-lives of permeate flux decline and the micelle-zinc binding ratios.This has allowed us to determine conditions which allow an optimum separation efficiency.Overall,the experiments have demonstrated a potential for improving the efficiency of the treatment of wastewater containing heavy metal ions.
机译:膜分离技术在工业和城市废水处理中的应用频率越来越高,这是应对日益严格的有关废水排放的环境法规的一种方法。特别是,本文提出的研究工作是由减少废水排放的需求驱动的。胶束增强超滤(MEUF)是一种基于胶体的废水处理工艺。大型阴离子表面活性剂胶束的斯特恩层的吸附能力用于捕获胶束中的重金属离子,实验工作研究了通过使十二烷基硫酸钠胶束的流体力学直径内的斯特恩和扩散层半径塌陷来增加增加污染物离子捕获的可能性。通过添加多价离子而接近絮凝的状态包括故意作为絮凝剂离子添加的铝和溶液中的目标重金属离子(此处以锌表示)。通过表面活性剂,铝和锌离子浓度的组合实现了近絮凝。电气三层胶束的压缩和近絮凝意味着溶液中存在的大部分金属离子与胶束一起被拉动。近絮凝(或完全絮凝)的胶束的高孔隙率和渗透性也降低了凝胶形成的趋势滴定分析和超滤实验相结合,研究了渗透通量下降的半衰期与胶束与锌的结合率之间的关系。这使我们能够确定允许最佳分离效率。总体而言,实验证明了提高处理效率的潜力。 f废水中含有重金属离子。

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