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Effect of varying the amount of binder on the electrochemical characteristics of palm shell activated carbon

机译:不同粘合剂量对棕榈壳活性炭电化学特性的影响

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Polytetrafluoroethylene (PTFE) is among the most common binders used in the fabrication of an electrode, which is used for various electrochemical applications such as desalination, water purification, and wastewater treatment. In this study, the amount of the binder was varied at 10, 20, 30, and 40 wt% of the total mass of palm shell activated carbon (PSAC). The PSAC was used as the active material and carbon black was used as the conductive agent. The effect of different amounts of binder was observed by evaluating the electrochemical characteristics of the electrode through cyclic voltammetry (CV) and potentio electrochemical spectroscopy (PEIS). The CV analysis was employed to determine the geometric area normalised electrode double layer capacitance, Ce, and the electrode reaction of the prepared electrode. Meanwhile, the common redox probe, ferro/ferricyanide in 0.5 M NaCl, was employed to estimate the electron transfer resistance through PEIS. The electrochemical characterisation proved that the optimum amount of PTFE was 20 wt% for the 4:1 ratio of active material to conductive agent. On increasing the amount of the binder to 30 wt% and 40 wt%, the estimated value of Ce decreased and remained almost equivalent. Adding more than 30 wt% of binder resulted in pore blockage and reduced the available active site on the PSAC electrode. In addition, the electron transfer resistance of the prepared electrode was found to be in the range of 4-5 Ω·cm~2.
机译:聚四氟乙烯(PTFE)是用于制造电极的最常用的粘合剂中,其用于各种电化学应用,例如脱盐,净水和废水处理。在该研究中,粘合剂的量在棕榈壳活性炭(PSAC)总质量的10,20,30和40wt%中变化。使用PSAC作为活性材料,用炭黑用作导电剂。通过通过循环伏安法(CV)和电极电化学光谱(PEI)评价电极的电化学特性观察不同量的粘合剂的效果。采用CV分析来确定制备电极的几何区域归一化电极双层电容,Ce和电极反应。同时,使用常见的氧化还原探针,0.5M NaCl中的铁氰化物,通过PEI估计电子传递抗性。电化学表征证明,对于导电剂的活性材料与活性材料的比例为20wt%的PTFE为20wt%。在增加粘合剂至30重量%和40重量%的情况下,CE的估计值下降,几乎保持着等效。添加超过30wt%的粘合剂导致孔隙堵塞并降低了PSAC电极上的可用活动位点。另外,发现制备的电极的电子传递电阻在4-5Ω·cm〜2的范围内。

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