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Thermophysical Properties of Silicon Dioxide (SiO2) in Ethylene Glycol/Water (EG/W) Mixture for Proton Exchange Membrane Fuel Cell Cooling Application

机译:质子交换膜燃料电池冷却用乙二醇/水(EG / W)混合物中二氧化硅(SiO2)的热物理性质

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摘要

Polymer Electrolyte Membrane Fuel Cells (PEMFC) operation is sensitive to micro electrochemical changes and canudonly tolerate a small temperature variation for optimal power generation. An effective cooling system is needed to comply with this condition. Nanofluids are perceived as a potential coolant for thermal management in PEMFCudapplication that allows for more compact design. The dispersion of nanofluid in water-ethylene glycol base fluid enhances the thermal conductivity for improved heat transfer. The thermal conductivity, viscosity and electrical conductivity of different Silicon Dioxide (SiO2) concentrations diluted in Ethylene Glycol/Water (EG/W) mixtures of 40EG, 50EG and 60EG are reported. However, the electrical conductivity would contribute to electrical leakage and is a limiting factor for fuel cell operation. Highest value of thermal conductivity recorded is the dispersion of nanofluid in 40EG whereas the viscosity of SiO2 is the highest in 60EG dilution. Electrical conductivity is recorded the highest in EG/W 40:60% with 0.5% of SiO2. However, the electrical conductivity would contribute to electrical leakage and is a limiting factor for fuel cell operation.
机译:聚合物电解质膜燃料电池(PEMFC)的操作对微电化学变化很敏感,并且只能忍受很小的温度变化,以实现最佳发电。需要一个有效的冷却系统来满足此条件。纳米流体被认为是PEMFC ud应用程序中进行热管理的潜在冷却剂,可实现更紧凑的设计。纳米流体在水-乙二醇基础流体中的分散增强了导热性,从而改善了热传递。报告了在40EG,50EG和60EG的乙二醇/水(EG / W)混合物中稀释的不同浓度的二氧化硅(SiO2)的热导率,粘度和电导率。但是,电导率会导致漏电,并且是燃料电池运行的限制因素。记录的最高热导率值是纳米流体在40EG中的分散度,而SiO2的粘度在60EG稀释液中最高。在EG / W 40:60%(含0.5%SiO2)的情况下,电导率最高。但是,电导率会导致漏电,并且是燃料电池运行的限制因素。

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