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EPHYRA - Establishing European Production of Hydrogen from RenewAble energy and integration into an industrial environment

EPHYRA - Establishing European Production of Hydrogen from RenewAble energy and integration into an industrial environment
EPHYRA - 在欧洲利用可再生能源生产氢气并融入工业环境
批准号:
10086772
负责人:
金额:
$63.41万
依托单位国家:
英国
项目类别:
EU-Funded
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
翻译
EPHYRA 将展示东南欧首个工业规模可再生氢生产设施的集成,该设施采用改进的电解技术,规模为 30 兆瓦。大规模电解将与卫生部科林斯炼油厂的工业运营相结合,科林斯炼油厂是欧洲顶级炼油厂之一,也是希腊最大的私营工业综合体。它将在商业条件下运行至少两年,并将为炼油厂的工艺和外部最终用户提供可再生氢气。工业一体化的可再生氢生产将围绕循环经济、工业共生方法进行开发,因为电解槽将与(i)可再生电力生产、(ii)可再生电力储存、(iii)创新废热收集技术、(iv)水利用环境优化、(v)当前卫生部炼油厂运营中产生的氧气的增值、(vi)数字孪生和(vii)专用能源管理系统相结合。 EPHYRA 将为清洁氢合作伙伴关系 SRIA 目标中详述的所有电解技术 KPI 做出贡献。因此,该项目将以尽可能低的成本展示其绿色氢生产的可靠性,从而实现欧盟可再生氢经济、工业脱碳和零排放
英文摘要
EPHYRA will demonstrate the integration of a first-of-its-kind renewable hydrogen production facility at industrial scale in South eastern Europe by employing an improved electrolysis technology, at a scale of 30 MW. The large-scale electrolysis will be integrated with industrial operations within MOH’s Corinth Refinery, one of the top refineries in Europe and the largest privately-owned industrial complex in Greece. It will be operated for at least 2 years under commercial conditions and will supply renewable hydrogen to the refinery’s processes and external end-users. The industrially integrated renewable hydrogen production will be developed around a circular economy, industrial symbiotic approach, as the electrolyser will be coupled with (i) renewable electricity production, (ii) renewable electricity storage, (iii) an innovative waste heat harvesting technology, (iv) water use environmental optimisation, (v) valorisation of produced oxygen in current MOH Refinery operations, (vi) a digital twin and (vii) a dedicated energy managementsystem. EPHYRA will contribute to all electrolysis technology KPIs as detailed in Clean Hydrogen Partnership SRIA objectives. Therefore, the project will demonstrate its reliability for green hydrogen production at the lowest possible cost thus enabling the EU renewable hydrogen economy, industry decarbonisation and zero-emission
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