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1.
An analytical model for gas leakage through contact interface in proton exchange membrane fuel cells
《International Journal of Hydrogen Energy》2022,47(75):32273-32286
Sealing performance between two contacting surfaces is of significant importance to stable operation of proton exchange membrane (PEM) fuel cells. In this work, an analytical micro-scale approach is first established to predict the gas leakage in fuel cells. Gas pressure and uneven pressure distribution at the interface are also included in the model. At first, the micro tortuous leakage path at the interface is constructed by introducing contact modelling and fractal porous structure theory. In order to obtain the leakage at the entire surface, contact pressure distribution is predicted based on bonded elastic layer model. The gas leakage through the discontinuous interface can be obtained with consideration of convection and diffusion. Then, experiments are conducted to validate the numerical model, and good agreement is obtained between them. Finally, influences of surface topology, gasket compression and gasket width on leakage are studied based on the model. The results show that gas leakage would be greatly amplified when the asperity standard deviation of surface roughness exceeds 1.0 μm. Gaskets with larger width and smaller thickness are beneficial to sealing performance. The model is helpful to understand the gas leakage behavior at the interface and guide the gasket design of fuel cells. 相似文献
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本研究以微纳木质纤维素纸基材料作为载体,木质素作为还原剂和封端剂,制备了具有“三明治”结构的纸基钯纳米粒子复合催化材料,并分析讨论了其对六价铬离子(Cr6+)的催化还原性能。结果表明,钯纳米粒子(Pd NPs)的尺寸随木质素含量增多而减小,木质素含量为3.07%时,Pd NPs的负载量达0.50%,同时其对Cr6+的催化效率也达到最佳效果,可在8 min内实现Cr6+到Cr3+完全降解转化;经过5次循环使用,催化效率仍达99%以上;通过热压提升材料的整体结合强度,可使其表现出良好的稳定性和可重复使用性。 相似文献
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为了可以对电镀废水中的金属盐类和水实现高效的资源化回收,且相较于常规蒸发法处理废水更加节能,提出了闭式热泵膜蒸馏电镀废水系统。该系统将膜蒸馏技术与闭式热泵进行耦合,基于质量和能量守恒原理编写膜蒸馏自定义模型,在与实验数据进行对比验证后,通过Aspen Plus仿真平台建立流程来模拟工作情况。通过改变关键操作参数,得到以下结果:进料速度会引起系统功耗的大幅度增加而对于膜蒸馏的潜热的影响较小,因此进料速度对于系统造水比(GOR)影响最大。蒸发温度对于系统的能效比(COP)有着较大的影响,且COP随着蒸发温度的提升而上升,在不同蒸发温度下,系统GOR的下降趋势随进料温度升高先缓再陡。进料浓度对于系统产量比(YRO)有着重要作用,YRO随进料浓度上升而上升;当处在较低的蒸发温度下,不同浓度下的GOR在低进料温度时值较为接近。 相似文献
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基于上海城镇污水处理厂AAO-MBR膜工艺长期运行中膜不可逆污染严重、离线化学清洗难以恢复理想通量的问题,对其清洗方式进行改进。在原清洗方式的基础上增加草酸二次清洗,探究污染膜产水能力恢复情况,并通过中试试验进行验证。结果表明:膜清洗方式改进后,离线清洗对膜污染物的去除更加彻底,清水通量可恢复至新膜的95.1%,较原清洗方式提高了27.2%。在相同通量下中试运行24 d后,膜运行压力比原清洗方式低18.2 kPa,膜污染速率明显减慢。研究通过改进MBR长期运行平板膜的污染物清洗方法,为今后MBR污水厂膜清洗提供参考,具有较好的工程指导意义。 相似文献
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Pimchaya Luangaramvej Peeranuch Poungsripong Stephan Thierry Dubas 《Polymer International》2022,71(1):139-145
Polyelectrolyte complex (PEC) membranes prepared from poly(styrene sulfonate) (PSS) and poly(diallyldimethylammonium chloride) (PDADMAC) were modified by crossflow polymerization of aniline (ANI). The PEC membranes were used as separators in a two-compartment setup where ANI monomer and ammonium persulfate (APS) oxidant diffused through the membranes to form polyaniline (PANI). APS and ANI having different distributions throughout the membranes, the reaction led to the asymmetric polymerization of PANI on one face of each PEC membrane thus producing Janus membranes. Due to the excess PANI content, the membrane displayed distinct asymmetric electrical conductivities on each face. Interestingly, very different ANI polymerizations were obtained when nonstoichiometric PEC membranes having different molar ratio of cationic and anionic polyelectrolytes (P+:P? represents PDADMAC:PSS) were used and transport of APS was fastest through the 2:1 PEC when compared to the 1:2 PEC. In all experiments, the polymerization was most intense on the ANI side of the membranes. Also, the influence of NaCl both during PEC fabrication and during polymerization was studied and found to have some effect on the solute permeability. Results showed that a higher content of PANI was formed on PEC membranes having excess P+ and with no NaCl added during PEC fabrication. Although X-ray diffraction confirmed the presence of PANI on both sides of each membrane, scanning electron microscopy images demonstrated that both sides of each membrane had different PANI content deposited. Electrical conductivity measurements using a four-point probe setup also showed that the PEC–PANI exhibits asymmetric electrical property on different sides. © 2021 Society of Industrial Chemistry. 相似文献
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本研究分别采用多巴胺-端环氧基硅油与硝酸-端环氧基硅油体系改性碳纤维,对比了纤维表面形貌和化学官能团的变化,探究了化学协同改性机理。进一步表征了纸基摩擦材料的表面形貌、粗糙度及孔隙结构,研究了协同改性对纸基摩擦材料力学和摩擦学性能的影响规律。结果表明,硝酸-端环氧基硅油改性体系更有利于提升纸基摩擦材料力学强度和耐磨性,改性后纸基摩擦材料的拉伸强度和层间剪切强度分别较改性前提高了25.8%和23.6%,磨损率降至0.620×10-8 cm3/J;相比于多巴胺预处理,硝酸刻蚀过程不仅可以增加后续端环氧基硅油接枝改性的活性位点,同时提高了碳纤维与树脂间的化学交联密度。 相似文献
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以天然海水作为正渗透汲取液,构建了正渗透膜浓缩市政污水系统,对比研究CTA-ES和TFC-ES正渗透膜对污染物的截留与浓缩效果,结果表明,2种正渗透膜对有机物和营养元素截留率较高,出水水质较好,在污水浓缩至初始体积的1/6过程中,由于污染物在膜表面的富集作用,FO膜对氨氮和TN浓缩倍数仅为2.1~3.4倍,而对COD和TP浓缩倍数可达3.4~5.7倍,浓缩污水产甲烷潜力为203 mL/g COD,厌氧可生化性较好,CTA膜对污染物的截留浓缩效能要略优于TFC膜。 相似文献
10.
《International Journal of Hydrogen Energy》2022,47(14):8943-8955
In this research, a technical, economic and environmental analysis has been proposed to a Hybrid Solid Oxide Fuel Cell (SOFC) system-based hybrid system including biomass, gas turbine, and Proton Exchange Membrane Electrolyzer. A multi-objective optimization technique has been utilized to improve the overall product cost and the exergy effectiveness based on a developed version of Aquila Optimizer (DAO). The main idea of using the developed version is to improve the accuracy and the precision of the original Aquila optimizer. The system is then authenticated in terms of energy/exergy effectiveness, and energy-economic efficiency. The achievements indicate that employing the optimization algorithm for different configurations provided satisfying results for the system. 相似文献