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Architectures for scalable integrated photo driven catalytic devices-A concept study

机译:可扩展的集成式光驱动催化装置的体系结构-概念研究

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Architectures with various degrees of integration are investigated for water splitting devices using the energy of light for fuel production. The many approaches presented in literature for such 'photo driven catalytic (PDC) devices' are reviewed and discussed in perspective of their scalability to large area. Then, back-of-the-envelope type techno-economic considerations for such systems are presented. Compared to the benchmark, consisting of large electrolyzers coupled to the grid, it was found that PDC devices could be competetive in places with high irradiation, given the assumption that no compromises on system stability have to be made compared to stand-alone PV-systems for electricity generation. In agreement with literature, it was found that the cost of the PV part dominate the hydrogen generation costs, based on today's technology. Thus, device architectures that allow low cost PV (by e.g. avoiding use of costly materials or introducing further inherent loss mechanisms) are considered the most promising ones. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了将光能用于燃料生产的分水装置的各种集成度的体系结构。本文针对此类“光驱动催化(PDC)装置”提出了许多方法,并从其可扩展到大面积的角度进行了讨论。然后,提出了这种系统的信封式技术经济考虑。与基准测试相比,由大型电解槽与电网组成的基准测试相比,发现PDC设备在高辐射场所可以具有竞争力,因为假设与独立的光伏系统相比,系统稳定性不会受到影响。用于发电。与文献一致,发现基于当今技术,PV部分的成本占制氢成本的主导。因此,允许低成本PV(例如通过避免使用昂贵的材料或引入进一步的固有损耗机制)的设备架构被认为是最有前途的。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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