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Graphene Oxide-Based Membranes for Water Purification Applications: Effect of Plasma Treatment on the Adhesion and Stability of the Synthesized Membranes

机译:用于水净化应用的石墨烯氧化物膜:血浆处理对合成膜的粘附性和稳定性的影响

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摘要

The adhesion enhancement of graphene oxide (GO) and reduced graphene oxide (rGO) layer in the underlying polyethersulfone (PES) microfiltration membrane is a crucial step towards developing a high-performance membrane for water purification applications. In the present study, we modified the surface of a PES microfiltration membrane with plasma treatment (PT) carried out at different times (2, 10, and 20 min). We studied the effect of PT on the adhesion, stability, and performance of the synthesized GO/rGO-PES membranes. The membranes’ surface morphology and chemistry were characterized using atomic force microscopy, field emission scanning electron microscopy, and Fourier transform infrared spectroscopy. The membrane performance was evaluated by conducting a diffusion test for potassium chloride (KCl) ions through the synthesized membranes. The results revealed that the 2 min PT enhanced the adhesion and stability of the deposited GO/rGO layer when compared to the other plasma-treated membranes. This was associated with an increase in the KCl ion rejection from ~27% to 57%. Surface morphology analysis at a high magnification was performed for the synthesized membranes before and after the diffusion test. Although the membrane’s rejection was improved, the analysis revealed that the GO layers suffered from microano cracks, which negatively affected the membrane’s overall performance. The use of the rGO layer, however, helped in minimizing the GO cracks and enhanced the KCl ion rejection to approximately 94%. Upon increasing the number of rGO deposition cycles from three to five, the performance of the developed rGO-PES membrane was further improved, as confirmed by the increase in its ion rejection to ~99%.
机译:石墨烯氧化物(GO)和石墨烯(RGO)层在下面的聚醚砜(PES)微滤膜中的粘附性增强是朝向用于水净化应用的高性能膜的关键步骤。在本研究中,我们在不同时间(2,10和20分钟)进行的等离子体处理(Pt)修饰了PE微滤膜的表面。我们研究了PT对合成的GO / RGO-PES膜的粘附,稳定性和性能的影响。使用原子力显微镜,现场发射扫描电子显微镜和傅里叶变换红外光谱表征膜的表面形态和化学。通过通过合成膜进行氯化钾(KCl)离子的扩散试验来评价膜性能。结果表明,与其他等离子体处理的膜相比,2分钟PT增强了沉积的去/ rgo层的粘附性和稳定性。这与KCl离子排斥的增加〜27%至57%有关。在扩散试验之前和之后对合成膜进行高倍率的表面形态分析。虽然膜的拒绝得到改善,但分析显示,GO层遭受微/纳米裂缝,对膜的整体性能负面影响。然而,使用rgo层的用途帮助最小化了去裂缝并增强了KCl离子抑制至约94%。在增加三到五个rgo沉积循环循环的数量后,通过其离子排斥的增加至约99%,进一步改善了所开发的RGO-PES膜的性能。

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