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Development of superhydrophillic tannic acid-crosslinked graphene oxide membranes for efficient treatment of oil contaminated water with enhanced stability

机译:超硫醇单宁酸交联的石墨烯氧化物膜的研制具有增强稳定性油污污染水的高效处理

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摘要

In the present age of industrialization, oil contamination in the waste water has become a huge global concern due to its several negative impacts on human health and aquatic ecosystem. In order to address this problem, a novel oleophobic and super-hydrophilic graphene-based membrane has been developed using simple and cost-effective vacuum filtration methodology. Prior developing the membranes, the graphene oxide (GO) sheets were crosslinked with tannic acid (TA) molecules in order to improve their mechanical and surface properties. To obtain the structural and morphological information of the membranes and their constituents, Field Emission Scanning Electron (FE-SEM) microscopy, X-Ray Diffraction (XRD), FTIR spectroscopy and Raman spectroscopy was used. When tested with simulated oilfield effluent samples, these membranes exhibited significant reduction in the values of chemical oxygen demand (COD), total dissolved solids (TDS), total suspended solids (TSS) and turbidity demonstrating low-oil adhesion and preferable oil rejection rates. Moreover, such crosslinked membranes are highly stable which can withstand the pressure of water filtration. In such a way, TA crosslinked GO membranes present a robust and efficient way to treat oil contaminated water released from various industries which can be reused for numerous further applications.
机译:在目前的工业化时代,由于其对人体健康和水生生态系统的几个负面影响,废水中的石油污染成为一个巨大的全球关注。为了解决这个问题,使用简单且经济高效的真空过滤方法开发了一种新的疏水和超亲水石墨烯基膜。在开发膜之前,将石墨烯(GO)片与单宁酸(TA)分子交联,以改善其机械和表面性质。为了获得膜的结构和形态学信息及其成分,使用场发射扫描电子(Fe-SEM)显微镜,X射线衍射(XRD),FTIR光谱和拉曼光谱。当用模拟油田流出物样品进行测试时,这些膜表现出显着的化学需氧量(COD),总溶解固体(TDS),总悬浮固体(TSS)和浊度的显着降低,证明了低油粘附和优选的排水速率。此外,这种交联膜是高度稳定的,其能够承受水过滤的压力。在这种方式,TA交联的去膜呈现一种稳健而有效的方法来处理从各种行业释放的油污污染的水,这可以重复用于许多进一步的应用。

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