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The role of vacuum based technologies in solid oxide fuel cell development to utilize industrial waste carbon for power production

机译:真空基技术在固体氧化物燃料电池开发中的作用利用工业废碳电力生产

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摘要

Solid oxide fuel cells (SOFCs) are devices that can generate electrical power and heat by transforming the chemical energy stored in the fuels. Waste carbon from industries is a surplus that requires resources to be properly managed without harming the environment. To utilize the chemical energy stored in the waste carbon and convert it into electrical power via SOFC, gives an ethical advantage to produce green electricity at reduced fuel costs. However, operating under carbonaceous conditions requires special fabrication strategies for the SOFC to ensure prolonged efficient operation. In view of the above, the overarching aim of this review paper is to 1. Analyse state of the art vacuum-based fabrication techniques and compare them with conventional techniques to manufacture different classes of SOFCs used in literature till date, 2. Understand the reaction mechanisms for operating on various fuels at a range of operating temperatures, 3. Focus on the modes of operation for activated and industrial waste carbon fuelled SOFCs (CFCs) and calculate their respective fuel conversion efficiencies, power production ability and longevity 4. Suggest novel electronic and ionic conductors with various configurations that show promise when operated in carbonaceous environments yet remain unexplored by researchers, 5. Consolidate the latest life cycle assessment studies on multi-fuelled kW-MW class SOFCs to gauge their environmental and techno-economic impact assessment. The overall objective of this study is to provide the reader an understanding of the challenges and opportunities that exist in realistic implementation of CFCs in the existing infrastructure.
机译:固体氧化物燃料电池(SOFC)是通过将存储在燃料中的化学能量转换而产生电力和热量的装置。来自行业的废碳是一种盈余,需要在不损害环境的情况下正确管理资源。为了利用存储在废碳中的化学能量并通过SOFC将其转换成电力,给出了以降低的燃料成本产生绿色电力的道德优势。然而,在碳质条件下运作需要SOFC的特殊制造策略,以确保长时间的有效运行。鉴于上述情况鉴于上述情况,本综述论文的总体目的是分析艺术真空的制造技术的状态,并将它们与常规技术进行比较,以制造文献中使用的不同类别的SOFC,2.理解反应在一系列工作温度下进行各种燃料操作的机制,3.专注于激活和工业废物碳的操作模式燃料SOFC(CFC),并计算各自的燃料转换效率,电力生产能力和长寿4.建议新颖的电子和离子导体具有各种配置,这些配置显示在碳质环境中运营时的承诺,但研究人员仍未探讨,5.巩固对多燃料KW-MW类SOFC的最新生命周期评估研究,以衡量其环境和技术经济影响评估。本研究的总体目标是为读者提供了解现有基础设施中氟氯化碳现实实施中存在的挑战和机遇。

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