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The Tests of 1 kW_e Diesel Reformer and Solid Oxide Fuel Cell System

机译:1 kW_e柴油重整器和固体氧化物燃料电池系统的测试

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The high temperatures required to operate solid oxide fuel cells (SOFCs) allow for internal reforming of hydrocarbon fuels over a Ni-based anode. With their capability of being fuel flexible, SOFCs have operated under a wide range of fuels including diesel as examined in this study. But in order to reduce high possibilities of deposit formation in diesel internal reforming, additional external reforming technology was used for our system. The final goal of this research is to develop 1 kW_e diesel-powered SOFC systems for residential power generation. Before constructing a complete 1 kW_e SOFC system, a series of durability experiments were conducted on individual components of the system including the fuel reformer and stack. After testing the full-scale 1 kW_e diesel reformer, deposit formation was visible within the catalyst and on the surface of the reactor head, which seriously degraded the performance. With several individual components tested, the construction of one-box type 1 kW_e SOFC system is in progress. In a preliminary six-cell stack test using sulfur-free synthetic diesel, the system initially showed an output power of ~110 kW_e at a 0.8 V average cell potential. However, there was a significant drop off in output power after a few hours of operation, which was likely caused by severe deposit formation on the SOFC stack. Light hydrocarbons such as ethylene and/or "less reformed" heavier hydrocarbons caused by gas reactions under the incomplete fuel mixing upstream of the catalyst were likely responsible for the deposit formation.
机译:操作固体氧化物燃料电池(SOFC)所需的高温允许在Ni基阳极上对烃类燃料进行内部重整。由于本燃料具有灵活的燃料使用能力,因此SOFC已在包括柴油在内的多种燃料下运行。但是,为了减少在柴油内部重整中形成沉积物的高可能性,我们的系统使用了额外的外部重整技术。这项研究的最终目标是开发用于住宅发电的1 kW_e柴油动力SOFC系统。在构建完整的1 kW_e SOFC系统之前,对系统的各个组件(包括燃料重整器和烟囱)进行了一系列耐久性试验。在测试了满量程的1 kW_e柴油重整器后,在催化剂内和反应器顶部的表面可见沉积物形成,这严重降低了性能。在测试了几个单独的组件之后,正在进行单箱式1 kW_e SOFC系统的建设。在使用无硫合成柴油的初步六节电池堆测试中,该系统最初显示的平均电池电势为0.8 V时,输出功率为〜110 kW_e。但是,运行数小时后,输出功率会明显下降,这很可能是由于SOFC堆上形成了严重的沉积物所致。在催化剂上游不完全燃料混合下,由气体反应引起的轻质烃类(如乙烯)和/或“重整度较低”的重质烃类可能是沉积物形成的原因。

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