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Multi-objective optimization of a hydrogen production through the HyS process powered by solar energy in different scenarios

机译:在不同情况下通过太阳能驱动的HyS工艺对氢气生产进行多目标优化

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Thermochemical or hybrid cycles powered by concentrated solar energy are a very promising way to produce an effective clean hydrogen through the water splitting, in terms of greenhouse gas (GHG) emissions and power production sustainability. SOL2HY2 is an European project focused on this goal. It deepens the so-called HyS process in a closed or partially open version using a proper SO2 depolarized electrolyser, and moreover, it investigates key materials and process solutions, along the entire production chain. However, the identification of the best solution to obtain a suitable hydrogen in terms of cost, efficiency, availability of energy and material, sharing of renewable energy source, continuity of operation in different locations and plant sizes, poses many challenges in terms of flexibility and complexity of the system. In fact, it involves various chemical equipment, different solar and thermal storage technologies, and variable operative conditions with different reaction temperatures and mixture concentrations. Hence it arises the importance to have a tool for the investigation of this system.
机译:就温室气体(GHG)排放和电力生产的可持续性而言,由集中太阳能驱动的热化学或混合循环是通过水分解产生有效的清洁氢的非常有前途的方法。 SOL2HY2是专注于此目标的欧洲项目。它使用适当的SO2去极化电解槽,以封闭或部分开放的形式加深了所谓的HyS工艺,此外,它还研究了整个生产链中的关键材料和工艺解决方案。然而,从成本,效率,能源和材料的可利用性,共享可再生能源,在不同地点和工厂规模的连续性方面寻找最佳解决方案以获得合适的氢气,在灵活性和灵活性方面提出了许多挑战。系统的复杂性。实际上,它涉及各种化学设备,不同的太阳能和热存储技术,以及具有不同反应温度和混合物浓度的可变操作条件。因此,具有用于调查该系统的工具变得很重要。

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