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The effects of Sn infiltration on dry reforming of biogas at solid oxide fuel cell operating conditions over Ni-YSZ catalysts

机译:Sn渗透对Ni-YSZ催化剂固体氧化物燃料电池操作条件下沼气干燥改性的影响

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This work presents successful infiltration of Ni-YSZ-based catalysts for dry reforming of biogas over a temperature range of 600-800°C.Ni catalysts over YSZ support are commonly used as solid oxide fuel cell(SOFC)anode material to catalyse the fuel,normally hydrogen,in electrochemical oxidation reaction to generate electricity.The objective of this work is to find suitable SOFC anode catalyst materials to enable the SOFCs to operate on biogas as a renewable and low cost fuel.There are challenges when biogas is used as fuel;biogas dry reforming is slow and deleterious carbon deposition is unavoidable.The slow electrochemical reaction leads to low SOFC performance.While accumulation of carbon deposits may reduce the catalytic activity,decrease the SOFC performance and can lead to a complete failure of the SOFC operation.In this work,tin salt was used as a dopant in careful infiltration of Ni-YSZ catalysts.Characterisations of the catalysts were performed using SEM,XRF and XPS.Dry reforming reactions were carried out in a quartz tube reactor attached to a quadrupole mass spectrometer to monitor the product gases.Various compositions of CO2:CH4 mixtures were used to simulate biogas.It was observed that at small quantities of less than 1 weight % Sn/Ni loadings,dry reforming of biogas produced much higher level of the desired CO and H2 gas products compared to that obtained over non-infiltrated NiYSZ catalyst.The developed Sn-Ni-YSZ catalysts were able to operate continuously for more than 48 hours without noticeable performance degradation.More work is still in progress;however,this work so far concludes that Sn-doped Ni-YSZ catalysts have improved dry reforming of biogas at SOFC operating temperatures and so promised successful operations of SOFCs using biogas,a renewable fuel source,to produce sustainable electricity with high efficiency.
机译:这项工作提出的Ni-YSZ催化剂的成功渗入干的温度范围内的生物气体的重整600-800°C.Ni在YSZ载体催化剂通常被用作固体氧化物燃料电池(SOFC)的阳极材料以催化燃料通常氢,在电化学氧化反应,产生electricity.The目标这项工作的是找到合适的SOFC阳极催化剂的材料,以使固体氧化物燃料电池上沼气作为可再生和低成本fuel.There被挑战操作时沼气被用作燃料;沼气干重整是缓慢的,有害的积炭是unavoidable.The慢电化学反应导致的碳沉积物的低SOFC performance.While积累可能会降低催化剂的活性,降低SOFC的性能和可导致SOFC操作的彻底失败。在这项工作中,锡盐被用作催化剂的镍YSZ catalysts.Characterisations仔细浸润的掺杂剂使用SEM,XRF和XPS.Dry reformi执行纳克反应在连接到四极质谱仪中的石英管反应器中进行以监控产物的CO 2 gases.Various组合物:CH 4混合物用于模拟biogas.It观察到,在小批量的小于1重量%的Sn / Ni负载,干燥沼气重整产生相比,通过非渗透NiYSZ catalyst.The得到开发的Sn-NiYSZ催化剂能够没有明显的,为超过48小时连续运行所需的CO和H 2的气体产物的高得多的电平性能degradation.More工作仍在进行中;但是,这项工作到目前为止的结论是锡掺杂的Ni-YSZ催化剂具有改进的干在固体氧化物燃料电池的工作温度沼气的转化和利用沼气,可再生燃料源固体氧化物燃料电池的这么承诺的成功运作,以高效率生产的可持续电力。

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