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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Comparison between dual-layer (superhydrophobic-hydrophobic) and single superhydrophobic layer electrospun membranes for heavy metal recovery by air-gap membrane distillation
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Comparison between dual-layer (superhydrophobic-hydrophobic) and single superhydrophobic layer electrospun membranes for heavy metal recovery by air-gap membrane distillation

机译:双层(超疏水 - 疏水)和单层超疏水层电纺器膜对重金属蒸馏重金属回收的比较

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摘要

A novel approach to enhance membrane performance using electrospinning fabrication technique for recovery of heavy metals using air-gap membrane distillation is described. Accordingly, a comprehensive study was accomplished to fabricate a unique electrospun dual-layer membrane (ESD) with an upper superhydrophobic layer and hydrophobic electrospun support layer and compare with a superhydrophobic electrospun single layer membrane (ESS). Superhydrophobic alumina nanoparticles (Al2O3) were embedded in a low polymer concentration of polyvinylidene fluoride (PVDF) to produce superhydrophobic ESS and top layer of ESD using electrospinning technique, while a mat with different concentrations of PVDF were used as hydrophobic electrospun support layer. In this study, dual layer membranes were fabricated in two sets. In the first set, layer thickness was varied by changing the spinning volume of the top and support layer with maintain total spinning volume, while in the second set the fibre diameter of the support layer was varied by changing the polymer concentration. Moreover, the electrospun membranes were characterized in terms of membrane performance such as: permeate flux, heavy metal rejection and energy consumption; wettability performance such as liquid entry pressure (LEP), and water contact angle (WCA); membrane structure such as mean with maximum pore size and porosity; membrane integrity such as mechanical and thermal integrity. The heavy metal rejection was 99% for all single and dual layer membranes when filtering artificial wastewater (Pb, Cd, Cr, Cu, Ni). When compared with single layer electrospun membrane made from spinning 16 ml PVDF, dual layer membrane made from the same spinning volume exhibited some improvement, such as higher permeate flux above 231/m(2).h (LMH) when filtering 2500 ppm concentration heavy metal feed water. Additionally, both sets of dual layer membrane demonstrated better mechanical performance and slight reduction of LEP compared with single layer electrospun membrane.
机译:描述了一种使用静电纺织制造技术来提高膜性能的新方法,用于使用空气间隙膜蒸馏回收重金属的膜性能。因此,完成了一种综合研究以制造具有上过散杂层和疏水性电纺器层的独特的电纺双层膜(ESD),并与超疏水电纺器单层膜(ESS)进行比较。将超富氢氧化铝纳米颗粒(Al 2 O 3)嵌入低聚合物浓度的聚偏二乙烯乙烯(PVDF)中,使用静电纺丝技术制备超疏水物和顶层ESD,而具有不同浓度PVDF​​的垫子用作疏水性电纺器层。在该研究中,两组制造双层膜。在第一组中,通过改变顶部的旋转体积和通过保持总旋转体积改变顶部和支撑层的旋转体积而改变层厚度,而在第二组中,通过改变聚合物浓度来改变支撑层的纤维直径。此外,膜性能的特征在于:渗透通量,重金属排斥和能量消耗,表征了电纺器膜;液体进入压力(LEP)和水接触角(WCA)等润湿性性能;膜结构,如平均孔径和孔隙率;膜完整性如机械和热完整性。重金属排斥&在过滤人造废水时,所有单层膜(Pb,Cd,Cr,Cu,Ni)的所有单层膜为99%。与由纺丝16mL PVDF制成的单层电纺器膜相比,当过滤2500ppm浓度重度时,由相同的纺丝体制成的双层膜表现出一些改善,例如高于231 / m(2).h(lmh)的更高渗透磁通量金属饲料水。另外,两组双层膜与单层电纺器膜相比,双层膜均显示出更好的机械性能和LEP的轻微减少。

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