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Cellulose Derived Graphenic Fibers for Capacitive Desalination of Brackish Water

机译:用于微咸水电容脱盐的纤维素衍生格拉芬纤维

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We describe a simple and inexpensive cellulose-derived and layer-by-layer stacked carbon fiber network electrode for capacitive deionization (CDI) of brackish water. The microstructure and chemical composition were characterized using spectroscopic and microscopic techniques; electrochemical/electrical performance was evaluated by cyclic voltammetry and 4-probe electrical conductivity and surface area by Brunauer-Emmett-Teller analysis, respectively. The desalination performance was investigated using a laboratory batch model CDI unit, under fixed applied voltage and varying salt concentrations. Electro-adsorption of NaCl on the graphite reinforced-cellulose (GrC) electrode reached equilibrium quickly (within 90 min) and the adsorbed salts were released swiftly (in 40 min) back into the solution, during reversal of applied potential. X-ray photoelectron spectroscopic studies clearly illustrate that sodium and chloride ions were physisorbed on the negative and positive electrodes, respectively during electro-adsorption. This GrC electrode showed an electro-adsorption capacity of 13.1 mg/g of the electrode at a cell potential of 1.2 V, with excellent recyclability and complete regeneration. The electrode has a high tendency for removal of specific anions, such as fluoride, nitrate, chloride, and sulfate from water in the following order: Cl- > NO3- > F- > SO42-. GrC electrodes also showed resistance to biofouling with negligible biofilm formation even after 5 days of incubation in Pseudomonas putida bacterial culture. Our unique cost-effective methodology of layer-by-layer stacking of carbon nanofibers and concurrent reinforcement using graphite provides uniform conductivity throughout the electrode with fast electro-adsorption, rapid desorption, and extended reuse, making the electrode affordable for capacitive desalination of brackish water.
机译:我们描述了一种简单而廉价的纤维素衍生的和逐层堆叠的碳纤维网络电极,用于微咸水的电容去离子(CDI)。显微结构和化学成分用光谱和显微技术表征。电化学/电性能分别通过循环伏安法和4-探针电导率和表面积通过Brunauer-Emmett-Teller分析进行评估。在固定的施加电压和变化的盐浓度下,使用实验室批量CDI装置研究了脱盐性能。在施加的电势反转期间,NaCl在石墨增强纤维素(GrC)电极上的电吸附迅速达到平衡(在90分钟内),吸附的盐迅速(在40分钟内)释放回溶液中。 X射线光电子能谱研究清楚地表明,在电吸附过程中,钠离子和氯离子分别物理吸附在负极和正极上。该GrC电极在1.2 V的电池电势下显示出13.1 mg / g电极的电吸附容量,具有出色的可回收性和完全再生能力。电极具有按以下顺序从水中去除特定阴离子(例如氟离子,硝酸根,氯离子和硫酸根)的高度趋势:Cl-> NO3-> F-> SO42-。即使在恶臭假单胞菌细菌培养物中孵育5天后,GrC电极也显示出对生物污垢的抵抗力,且生物膜的形成微不足道。我们独特的经济高效的方法将碳纳米纤维逐层堆叠并同时使用石墨进行增强,从而在整个电极中提供均匀的导电性,并具有快速的电吸附,快速解吸和延长的再利用性,从而使该电极可用于微咸水的电容式脱盐。

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