首页> 外文期刊>International journal of hydrogen energy >Highly proton conductive porous membranes based on polybenzimidazole/ lignin blends for high temperatures proton exchange membranes: Preparation, characterization and morphology- proton conductivity relationship
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Highly proton conductive porous membranes based on polybenzimidazole/ lignin blends for high temperatures proton exchange membranes: Preparation, characterization and morphology- proton conductivity relationship

机译:基于聚苯并咪唑/木质素共混物的高质子传导性多孔膜,用于高温质子交换膜:制备,表征和形态-质子电导率关系

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A new porous blend membranes based on polybenzimidazole (PBI) and lignin as a renewable material were prepared and structurally characterized by FT-IR for use in high temperature proton exchange membrane fuel cells (HT-PEMFCs). LiCl salt was used as a porogen to create micro-void in the membranes. The effect of presence of lignin and LiCl salt in the FBI on the structure of the membrane was investigated using scanning electron microscopy (SEM) analysis. Impedance spectroscopic (IS) technique was utilized to evaluate proton conductivity of the membranes at different temperatures. Through combining the SEM and IS results, a relationship between proton conductivity and the morphology of the membranes was established. The results showed that by increasing the content of lignin (0-20 wt%) in the membrane, phosphoric acid (PA) doping level increases from 4 to 26.8 and water uptake increases from 18 to 26.8 wt% because number and size of the pores formed in the membrane structure increase. The obtained results showed that increasing lignin content from 5 to 20 wt% results in increasing membrane proton conductivity from 14.6 to 69 mS/cm. This is the result of increasing doping level and decreasing the membrane resistance at ambient conditions (due to increasing numbers and diameters of micro-void in the membrane). The proton conductivities of PA-PBI/lignin membranes were also measured in a temperature range of 25-160 degrees C. Proton conductivity of membranes increased with temperature. Using the Arrhenius plot, the relationship between proton conductivity and temperature was investigated. At the evaluated range of temperatures, the proton conductivity of 5, 15, and 20 membranes increases 328%, 110%, and 120% compared to the ambient temperature, respectively. The highest proton conductivity was observed in sample PBI/lignin (20 wt%), to be 152 mS/cm at 160 degrees C. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:制备了一种基于聚苯并咪唑(PBI)和木质素作为可再生材料的新型多孔共混膜,并通过FT-IR对结构进行了表征,以用于高温质子交换膜燃料电池(HT-PEMFC)。 LiCl盐用作致孔剂以在膜中产生微孔。使用扫描电子显微镜(SEM)分析了FBI中木质素和LiCl盐的存在对膜结构的影响。阻抗光谱(IS)技术用于评估不同温度下膜的质子传导率。通过结合SEM和IS结果,建立了质子电导率与膜形态之间的关系。结果表明,通过增加膜中木质素的含量(0-20 wt%),磷酸(PA)的掺杂水平从4增加到26.8,吸水率从18增加到26.8 wt%,因为孔的数量和大小在膜结构中形成的增加。得到的结果表明,木质素含量从5wt%增加到20wt%导致膜质子电导率从14.6增加到69mS / cm。这是在环境条件下增加掺杂水平并降低膜电阻的结果(由于膜中微孔的数量和直径增加)。还在25-160℃的温度范围内测量了PA-PBI /木质素膜的质子电导率。膜的质子电导率随温度增加。使用Arrhenius图,研究了质子电导率和温度之间的关系。在评估的温度范围内,与环境温度相比,5、15和20膜的质子传导率分别增加了328%,110%和120%。在160摄氏度下,样品PBI /木质素(20 wt%)中观察到最高的质子传导性为152 mS / cm。(C)2018 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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