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首页> 外文期刊>Applied Energy >5 kW SOFC stack via 3D printing manufacturing: An evaluation of potential environmental benefits
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5 kW SOFC stack via 3D printing manufacturing: An evaluation of potential environmental benefits

机译:5 kW SOFC叠层通过3D印刷制造:对潜在的环境效益进行评估

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摘要

3D printing technologies are being called on to revolutionize the manufacturing industry of the energy sector, especially when involving functional materials and complete devices. These additive manufacturing technologies show competitive advantages over conventional processes, however only a few studies have assessed their environmental implications. In this work, the environmental performance of a Solid Oxide Fuel Cell stack produced using a novel 3D printing approach is conducted for the first time using Life Cycle Assessment. In addition, a comparative study with conventional manufacturing methods is carried out. The results reveal that the production of the 3D printing materials has the highest environmental impact (between 50% and 98%) in half of the categories studied. In contrast, the end-of-life stage represents less than 1% of the total impact. End-of-life scenarios are also presented and discussed, indicating that a recycling rate of 70% for Nickel and YSZ materials performs better than the defined landfill and incineration disposal scenarios. Furthermore, 3D printing shows the best overall environmental performance compared to other conventional methods. The main improvement is seen in the material production stage, where a savings ranging from 37% to 97% (depending on the category analysed) is observed. This is mainly due to the use of a ceramic material for the interconnects instead of Chromium-based alloys used in a more conventional approach. Finally, it was observed that the energy required for 3D printing in the manufacturing stage is a sensible parameter to the environmental performance of the SOFC 3D printing technology.
机译:被要求彻底调用3D印刷技术,彻底改变能源领域的制造业,特别是在涉及功能材料和完整的设备时。这些添加剂制造技术表现出与常规过程的竞争优势,但只有少数研究已经评估了他们的环境影响。在这项工作中,使用新颖的3D打印方法生产的固体氧化物燃料电池堆的环境性能首次使用生命周期评估进行。此外,进行了具有常规制造方法的对比研究。结果表明,在研究的一半类中,3D印刷材料的生产具有最高的环境影响(50%至98%)。相比之下,寿命结束阶段代表少于总影响的1%。还提出和讨论了寿命终端,表明镍和YSZ材料的回收率为70%,而且比定义的垃圾填埋场和焚烧处理方案更好。此外,与其他传统方法相比,3D打印显示了最佳的整体环境性能。在材料生产阶段看到主要改善,其中储蓄从37%到97%(取决于分析的类别)。这主要是由于使用用于互连的陶瓷材料而不是更常规方法使用的铬基合金。最后,观察到制造阶段3D打印所需的能量是对SOFC 3D打印技术的环境性能的明智参数。

著录项

  • 来源
    《Applied Energy 》 |2021年第1期| 116803.1-116803.12| 共12页
  • 作者单位

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain|Catalan Inst Res & Adv Studies ICREA Passeig Lluis Companys 23 Barcelona 08010 Spain;

    Catalonia Inst Energy Res IREC Jardins Dones Negre 1 2a Pl Barcelona 08930 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solid oxide fuel cell; 3D printing; Life cycle assessment; SOFC end-of-life scenarios;

    机译:固体氧化物燃料电池;3D打印;生命周期评估;SOFC生命结束情景;

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