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4. (CEA) Pierre Serre-Combe - HP PMB & IEA small.pdf

上传人: b**** 编号:890120 2025-08-24 13页 1.08MB

1、Non-Electric and Hybrid Applications of Nuclear Energy Workshop-GIF Hydrogen Production PMB and overview of WP4 on integration technologiesPierre Serre-Combe,HP PMB ChairmanBusan,26th of april 2024GEN IV International ForumSUMMARY1.General Overview of Hydrogen Production Project2.Update on R&D statu

2、s 3.Integration System and Coupling Evaluation4.Conclusion and Perspectives2General Overview of GIF VHTR Hydrogen Production PMB The VHTR hydrogen production project aims at developing and optimizing high temperature thermochemical and electrolysis water splitting processes,as well as defining and v

3、alidating technologies for coupling any Gen IV Nuclear Reactor system to such process plants safely and securely through an international collaborative program4VHTR Hydrogen Project Overview34Sulfur-Iodine ProcessCopper-Chlorine ProcessHigh Temperature Steam ElectrolysisHybrid-Sulfur Process WP 1:Su

4、lfur/Iodine(S/I)Process Flowsheet evaluations for the S/I process Material database:screening of materials in various environments relevant to the S/I thermo-chemical cycle Experimental component testing WP 2:High Temperature Steam Electrolysis Flowsheet evaluation of HTSE plants Dynamic experimenta

5、l testing of HTSE cells,stacks,and systems Heat Exchanger Development for High Temperature Steam Electrolysis Thermal Integration with Simulated Nuclear or Other Heat Source Pilot scale experiment WP 3:Cu-Cl and and Hybrid Sulphur Cycle(HyS)Technical evaluation,flowsheet analysis and experiments Eva

6、luation of economics(hydrogen production processes and coupled to a nuclear reactor Copper-Chlorine Cycle development Development of HyS process Laboratory-scale test and optimization WP 4:Coupling System Evaluation Safety Simulation System integration5WorkplanHigh Temperature HydrogenProduction Sys

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根据标记内容,全文主要围绕高温气冷堆(VHTR)氢能生产项目展开,包括: 1. 项目概述:旨在通过国际合作开发优化高温热化学和水裂解过程,并验证将任何第四代核反应堆系统安全有效地耦合到该过程工厂的技术。 2. 研发进展:包括硫碘过程、高温蒸汽电解、铜氯循环和混合硫循环等。 3. 关键数据:硫碘过程产氢量为100g/day,高温蒸汽电解产氢量超过100 kg/day,混合硫循环产氢量为32 kg/day。 4. 耦合系统评估:涉及安全性、模拟和系统集成。 5. 优化参数:包括热集成、热平衡和耦合配置等。 6. 未来展望:包括扩展研究、加强合作和商业案例分析等。
技术突破在即?" 核热电解技术展望" 未来能源耦合新方案?"
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