相转化法制备固体氧化物燃料电池高多孔阳极中添加成孔剂

Siti Halimah Ahmad, Siti Munira Jamil, M. Othman, Mukhlis A. Rahman, J. Jaafar, A. Ismail
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引用次数: 0

摘要

鉴于多孔电极可以为反应提供大量活性位点,从而加速燃料转化,对固体氧化物燃料电池(SOFC)阳极结构的详细研究对于开发高性能发电设备至关重要。本研究探讨了在氧化镍稳定氧化锆(NiO-YSZ)阳极中添加成孔剂的可行性,该阳极是通过基于相反转的铸造和烧结技术制造的。两种类型的成孔剂(即聚醚醚酮[PEEK]和玉米淀粉)的负载量在总悬浮液的0至10wt%之间变化。基于阳极形态(使用扫描电子显微镜(SEM))、晶相(使用X射线衍射(XRD)、表观孔隙率(基于标准ASTM C373-88)和弯曲强度(使用三点弯曲试验)来检查成孔剂负载及其类型的影响。结果表明,较高的成孔剂载荷增加了孔隙率,但显著降低了抗弯强度。阳极的SEM图像显示,通过添加2wt.%PEEK产生更多连接的开孔,它产生了有效的多孔结构。事实上,与玉米淀粉(4wt.%)的最佳负载量相比,记录的样品的机械强度为67%。基于这些发现,PEEK可以用作阳极制造中的成孔剂,产生适当的孔隙率,这有利于气体扩散,也可以作为阳极支撑体提供良好的机械强度。
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Pore Former Addition in the Preparation of Highly Porous Anode Using Phase-inversion Technique for Solid Oxide Fuel Cell
A detailed study on the anode structure of solid oxide fuel cell (SOFC) is very crucial in developing high performance power generating devices, given how porous electrodes are known to provide a number of active sites for reaction, consequently accelerate fuel conversion. This present study investigates the feasibility of pore former addition to nickel oxideyttria stabilized zirconia (NiO-YSZ) anode, fabricated via phase inversion-based casting and sintering technique. The loading of two types of pore former (i.e. polyetheretherketone [PEEK] and corn starch) was varied from 0 to 10 wt% of total suspension. The effects of pore former loading and its types were examined based on anode morphology using scanning electron microscopy (SEM), crystal phase by X-ray diffraction (XRD), apparent porosity based on standard ASTM C373-88, and bending strength using three-point bending test. Results had shown that higher loading of pore former increased the porosity, yet significantly reduced the bending strength. SEM images of anode displayed that by generating more connected open pores through the addition of 2 wt.% PEEK, it produced an effective porous structure. In fact, the sample recorded to be 67 % mechanically stronger compared to the best loading which is corn starch (4 wt.%). Based on these findings, PEEK can be used as pore former in anode fabrication that creates appropriate porosity, which benefits gas diffusion and also provides good mechanical strength as an anode support.
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来源期刊
Journal of Membrane Science and Research
Journal of Membrane Science and Research Materials Science-Materials Science (miscellaneous)
CiteScore
4.00
自引率
0.00%
发文量
1
审稿时长
8 weeks
期刊介绍: The Journal of Membrane Science and Research (JMSR) is an Open Access journal with Free of Charge publication policy, which provides a focal point for academic and industrial chemical and polymer engineers, chemists, materials scientists, and membranologists working on both membranes and membrane processes, particularly for four major sectors, including Energy, Water, Environment and Food. The journal publishes original research and reviews on membranes (organic, inorganic, liquid and etc.) and membrane processes (MF, UF, NF, RO, ED, Dialysis, MD, PV, CDI, FO, GP, VP and etc.), membrane formation/structure/performance, fouling, module/process design, and processes/applications in various areas. Primary emphasis is on structure, function, and performance of essentially non-biological membranes.
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