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Feasibility study and techno-economic analysis of an SOFC/battery hybrid system for vehicle applications

机译:用于汽车应用的SOFC /电池混合系统的可行性研究和技术经济分析

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A feasibility study and techno-economic analysis for a hybrid power system intended for vehicular traction applications has been performed. The hybrid consists of an intermediate temperature solid oxide fuel cell (IT-SOFC) operating at 500-800 °C and a sodium-nickel chloride (ZEBRA) battery operating at 300 °C. Such a hybrid system has the benefits of extended range and fuel flexibility (due to the IT-SOFC), high power output and rapid response time (due to the battery). The above hybrid has been compared to a fuel cell-only, a battery-only and an ICE vehicle. It is shown that the capital cost associated with a fuel cell-only vehicle is still much higher than that of any other power source option and that a battery-only option would potentially encounter weight and volume limitations, particularly for long drive times. It is concluded that increasing drive time per day decreases substantially the payback time in relation to an ICE vehicle running on gasoline and thus that the hybrid vehicle is an economically attractive option for commercial vehicles with long drive times. In the case where the battery has reached volume production prices at £70kWh~(-1) and current fuel duty values remain unchanged then a payback time < 2 years is obtained. For a light delivery van operating with 6 h drive time per day, a fuel cell system model predicted a gasoline equivalent fuel economy of 25.1 km L~(-1), almost twice that of a gasoline fuelled ICE vehicle of the same size, and CO_2 emissions of 71.6 g km~(-1), well below any new technology target set so far. It is therefore recommended that a SOFC/ZEBRA demonstration be built to further explore its viability.
机译:已经进行了用于车辆牵引应用的混合动力系统的可行性研究和技术经济分析。混合动力车由在500-800°C下运行的中温固体氧化物燃料电池(IT-SOFC)和在300°C下运行的钠镍氯化物(ZEBRA)电池组成。这样的混合动力系统具有范围扩大和燃料灵活性(由于IT-SOFC),高功率输出和快速响应时间(由于电池)的优点。将上述混合动力车与仅燃料电池,仅电池和ICE车辆进行了比较。结果表明,与仅使用燃料电池的车辆相关的资本成本仍远高于任何其他电源选项,并且仅电池的选项可能会遇到重量和体积的限制,特别是对于较长的行驶时间。得出的结论是,相对于使用汽油行驶的ICE车辆,每天增加的驾驶时间显着减少了投资回收时间,因此,对于具有较长驾驶时间的商用车,混合动力车在经济上具有吸引力。如果电池达到了70kWh〜(-1)的批量生产价格,并且当前燃油税值保持不变,则回收期<2年。对于每天运行6小时的轻型面包车,燃料电池系统模型预测的汽油当量燃油经济性为25.1 km L〜(-1),几乎是同等大小的汽油车ICE的两倍, CO_2排放量为71.6 g km〜(-1),远低于目前设定的任何新技术目标。因此,建议构建SOFC / ZEBRA演示以进一步探索其可行性。

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