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Design of 24/7 continuous hydrogen production system employing the solar-powered thermochemical S-I cycle

机译:设计24/7连续氢气生产系统,采用太阳能热化学S-I循环

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摘要

We propose a system design for continuous and emission-free hydrogen production using the thermochemical Sulfur-Iodine cycle. Process heat required for the sulfuric acid decomposition is exclusively generated by a combination of concentrating solar thermal parabolic trough and solar tower systems, which are operated during the daytime only. The proposed design relies on the decoupling of the high temperature section from the rest of the process through material and energy storage for continuous operation. We conceptually design the whole process via steady-state simulation and assess its thermal efficiency and economics. We reveal that the proposed system is comparable to its alternatives in terms of the heat-to-hydrogen efficiency (38.0%) and the levelized cost of hydrogen (10.4$/kg_(H_2) Since the levelized cost is primarily attributed to the capital investment, enlarging the proposed system will lead to significant cost reduction due to economies-of-scale.
机译:我们提出了一种使用热化学硫 - 碘循环的连续和排放氢生产的系统设计。硫酸分解所需的处理热量通过浓缩太阳能热抛物槽和太阳能塔系统的组合来完全产生,这在白天期间操作。所提出的设计依赖于通过材料和能量存储的其余过程的高温部分的去耦,以进行连续操作。我们通过稳态仿真概念地设计整个过程,并评估其热效率和经济学。我们揭示了所提出的系统与热到氢效率(38.0%)的替代品相当(38.0%)和氢气的调整成本(10.4 $ / kg_(h_2),因为该尺寸的成本主要归因于资本投资,扩大所提出的系统将导致由于规模经济导致的重大成本。

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