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Ammonia and MOF Based Hydrogen storagE for euRope - AMBHER

Ammonia and MOF Based Hydrogen storagE for euRope - AMBHER
欧洲基于氨和 MOF 的储氢 - AMBHER
批准号:
10039694
负责人:
金额:
$37.82万
依托单位:
依托单位国家:
英国
项目类别:
EU-Funded
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
AMBHER(欧洲基于氨和MOF的氢)是一个欧洲项目,提供了一种全面的方法来解决我们社会所追求的高度电气化所带来的短期和长期储能挑战。首先,AMBHER正在解决主要的社会、经济和技术问题,同时使用绿色氨作为季节性可再生能源储存。与此同时,AMBHER正在开发和展示创新的、更便宜的压缩氢存储,可能会解决与当地和经济相关的电力到氢中心的差距。因此,AMBHER将增加能源和运输部门的应用数量,以及主要参与者成功和工业采用的可能性。为了短期储氢,采用原始成型工艺(3D打印)将开发具有高表面积(>2.500 m2/g)和低成本合成的新型纳米多孔mof(金属有机框架)。此外,AMBHER将开发一种可容纳大量定制形状的MOF体的低温容器。与目前的高压气瓶(600- 1000欧元/千克氢气)相比,在100巴的条件下,40g/L的可用空间容量以具有竞争力的成本实现。对于长期储存,将开发先进的材料(催化剂和膜)及其在强化3d打印强化周期性开孔结构反应器中的组合,与传统系统相比,可以在更低的温度和压力下以氨(NH3)的形式在成本效益和资源效益的过程中储存氢。AMBHER项目正在TRL 5验证短期和长期解决方案,以解决在相关业务案例中开发的解决方案的定位。该项目由来自7个不同国家的16位欧洲行业和学术领袖建立。AMBHER合作伙伴的业绩证明了所有成员之间的协同效应和富有成效的合作性质。
英文摘要
AMBHER (Ammonia and MOF based Hydrogen for Europe) is a European project providing a holistic approach to tackle the short and long term energy storage challenges raised by the high degree of electrification our society is aiming for. Firstly, AMBHER is addressing the main societal, economic and technological questions coming together with the use of green ammonia as seasonal renewable energy storage. Simultaneously, AMBHER is developing and demonstrating innovative and cheaper compressed hydrogen storage potentially solving the gap toward local and economically relevant power-to-hydrogen hub. AMBHER will thus increase the number of applications in the energy and transport sectors and the possibilities for success and industrial adoption by key players. For short-term hydrogen storage, novel nanoporous MOFs (Metal Organic Frameworks) of high surface area (>2.500 m2/g) and low cost synthesis will be developed following an original shaping process (3D printing). Furthermore, AMBHER will develop a conformable cryo-vessel that can accommodate stacks of MOF bodies of tailored-made shape. A capacity of 40g/L of usable space at 100 bar is achieved at competitive cost with respect to current high pressure cylinders (600-1.000 euros/kg H2). For long-term storage, advanced materials (both catalysts and membranes) and their combination in an intensified 3D-printed intensified periodic open cell structured reactor will be developed to allow hydrogen storage in the form of ammonia (NH3) in a cost-efficient and resource-effective process at lower temperatures and pressures compared to conventional systems. AMBHER project is validating both short-term and long term solutions at TRL 5 addressing the positioning of the solutions developed in relevant business cases. The project is built around 16 industry and academic leaders in Europe, from 7 different countries. Track record of AMBHER partners proves the synergies and fruitful collaborative nature among all members.
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