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The Effects of Compression Pressure Applied on the Manufacture of Carbon Composite Bipolar Plate for PEMFC by Utilizing Graphite Waste Products

机译:利用石墨废品,对PEMFC碳复合双极板制造的压缩压力的影响

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Proton electrolyte membrane fuel cells (PEMFC) have near zero carbon dioxide and hazardous pollutant emission. Thus, it is considered as one of energy sources for transportation and other application which can improve environmental performance by decreasing the emission of greenhouse gases and other air pollutant. In accordance with its environmental preservation values, graphite waste product from electric arc furnace (graphite EAF) was chosen as a potential candidate material for bipolar plate for PEMFC. The utilization of graphite waste product is expected to result in light-weight and cost-effective bipolar plates. In this paper, we used graphite EAF as a filler together with carbon black and epoxy resin as a binder. We examined the effects of differential pressure applied on compression molding process on density, porosity, flexural strength and electrical conductivity of the resulting carbon polymer composite bipolar plate. Pressure was applied from 30 MPa - 60 MPa in increments of 5 MPa while maintaining constant temperature operation at 70 C for 4 hours. Maximum value of bipolar plate density was achieved at application 55 MPa, of 1.69 g/cm~3. At this condition, the flexural strength was measured to be 48 MPa with the porosity of 0.7%, and electrical conductivity of 1.03 S/cm.Taken together, we demonstrated that graphite EAF is a good candidate for the manufacturing of polymer composite bipolar plates.
机译:质子电解质膜燃料电池(PEMFC)具有接近零二氧化碳和危险污染物排放。因此,它被认为是用于运输和其他应用的能源之一,可以通过降低温室气体和其他空气污染物的排放来改善环境性能。根据其环境保护值,选择来自电弧炉(石墨EAF)的石墨废品作为PEMFC双极板的潜在候选材料。预计石墨废品的利用率将导致轻质和成本效益的双极板。在本文中,我们将石墨EAF用作填料和炭黑和环氧树脂作为粘合剂。我们检查了蓄压对压缩成型过程对所得碳聚合物复合双极板的密度,孔隙,弯曲强度和导电性的影响。从30MPa - 60MPa以5MPa的增量施加压力,同时保持70℃的恒定温度操作4小时。在施用55MPa,1.69g / cm〜3的施加55mPa中实现了双极板密度的最大值。在这种情况下,测量弯曲强度为48MPa,孔隙率为0.7%,电导率为1.03 s / cm.taken,我们证明了石墨EAF是制造聚合物复合双极板的良好候选者。

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