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Fatma Yehia Mohamed 工学博士 研究方向主要包括低温 CO₂ 分离与碳捕集、利用和封存(CCUS)、氢与天然气液化、液态空气储能(LAES)以及低碳能源系统集成。她擅长利用 Aspen HYSYS 开展流程建模与系统模拟,并具有低温及混合制冷剂流程的能量、火用、技术经济和系统效率评价经验。近期的研究重点是液氢(LH₂)、液化天然气(LNG)与液态空气储能系统的集成,以提高冷能回收率、系统效率和运行性能。此外,她还利用纳米压痕技术研究了高温高压条件下超临界 CO₂ 与页岩的相互作用及其力学响应。其研究兴趣还包括可持续能源转换、热能管理和综合能源系统优化。。
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Fatma Yehia Mohamed's’ research focuses on cryogenic CO₂ se-paration and carbon capture, utilization, and storage (CCUS); hyd-rogen and natural-gas liquefaction; liquid air energy storage (LAES); and the integration of low-carbon energy systems. She spec-ializes in Aspen HYSYS process modeling and the energy, exergy, techno-economic, and system-efficiency assessment of cryogenic and mixed-refrigerant processes. Her recent work examines the i-ntegration of liquid hydrogen (LH₂), liquefied natural gas (LNG), and LAES to improve cold-energy recovery, system efficiency, and operational performance. She has also investigated supercritical CO₂–shale interactions under high-pressure and high-temperature conditions using nanoindentation-based mechanical characteri-zation. Her broader research interests include sustainable energ-y conversion, thermal-energy management, and integrated energy-system optimization. |