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Prospects for solar only operation of the hybrid sulphur cycle for hydrogen production

机译:混合硫循环仅用于太阳能生产氢气的前景

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The hybrid sulphur process is one of the most promising thermochemical water splitting cycles for large scale hydrogen production. While the process includes an electrolysis step, the use of sulphur dioxide in the electrolyser significantly reduces the electrical demand compared to conventional alkaline electrolysis. Solar operation of the cycle with zero emissions is possible if the electricity for the electrolyser and the high temperature thermal energy to complete the cycle are provided by solar technologies.This paper explores the possible use of photovoltaics (PV) to supply the electrical demand and examines a number of configurations. Production costs are determined for several scenarios and compared with base cases using conventional technologies. The hybrid sulphur cycle has promise in the medium term as a viable zero carbon production process if PV power is used to supply the electrolyser. However, the viability of this process is dependent on a market for hydrogen and a significant reduction in PV costs to around $1/WP.
机译:对于大规模制氢,混合硫工艺是最有前途的热化学分水循环之一。尽管该方法包括电解步骤,但与常规的碱性电解法相比,在电解器中使用二氧化硫可大大减少电需求。如果电解技术的电能和高温热能由太阳能技术提供,则可以实现零排放的循环太阳能运行。本文探讨了利用光伏(PV)满足电力需求的可能性,并研究了多种配置。确定几种方案的生产成本,并与使用常规技术的基本方案进行比较。如果使用PV功率为电解槽供电,那么混合硫循环在中期有望成为可行的零碳生产工艺。但是,该方法的可行性取决于氢气市场以及将光伏成本大幅降低至约1美元/ WP。

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