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Solar hydrogen by high-temperature electrolysis: Flowsheeting and experimental analysis of a tube-type receiver concept for superheated steam production

机译:通过高温电解的太阳能氢:管型接收器概念的流动和实验分析,用于过热蒸汽生产

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High-temperature electrolysis (HTE) offers the potential of considerably higher efficiency than conventional alkaline electrolysis when producing hydrogen from water by solar energy. The production rate of the alkaline electrolyzer process is limited since the whole energy demand is covered by electricity. By contrast, in HTE part of the energy can be introduced as high temperature heat from concentrated solar power (CSP) leading to a significantly higher process efficiency. In the internal project SoHTEk a solar tube-type receiver to superheat steam to 700 °C for HTE was developed. The receiver was operated in DLR's solar simulator with up to 5 kg/h of steam reaching an outlet temperature of about 700 °C at a thermal efficiency of 40 % and a solar power of about 4 kW. In addition, a flowsheeting analysis was carried out of a HTE process with direct steam generation on a solar tower. Simulation of the process at steady-state yielded a thermal-to-hydrogen efficiency of 26 %. A subsequent sensitivity analysis indicated the potential to reach efficiencies of 38 % and more.
机译:高温电解(HTE)提供比太阳能从水从水的氢气产生时比常规碱性电解更高的效率的潜力。碱性电解槽工艺的生产率受到限制,因为电力全部能源需求被电力覆盖。相比之下,在HTE部分中,能量可以作为从集中的太阳能(CSP)的高温热量引入,导致较高的过程效率显着提高。在内部项目中,Sohtek将太阳能管式接收器过热至700°C用于HTE。接收器在DLR的太阳能模拟器中运行,高达5kg / h的蒸汽,以40%的热效率和约4kW的太阳能达到约700°C的出口温度。此外,在太阳能塔上具有直接蒸汽发生的HTE过程进行了流动分析。稳态过程的模拟产生了热对氢效率为26%。随后的敏感性分析表明效率达到38%等的可能性。

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