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Opportunities for large-scale energy storage in geological formations in mainland Portugal

机译:葡萄牙大陆地质构造中大规模储能的机会

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This article presents the methodology and results of the first screening conducted in Portugal to identify geological formations suitable for large-scale storage of energy from renewable sources. The screening focused on the identification of adequate porous media rocks, salt formations and igneous host rocks that could act as reservoirs for gas (hydrogen or methane) storage, Compressed Air Energy Storage, Underground Pumped Hydro and Underground Thermal Energy Storage.Public access geological information was collected, compiled in a database and spatially referenced in a GIS environment. The GIS and database were cross-checked with criteria for selecting geological reservoirs and with existing or anticipated spatial, environmental and social constraints. In a third step the feasibility of deploying each large-scale energy storage technology in each prospective reservoir was assessed and classified according to confidence, ranging from unlikely to proven, and to proximity to areas with wind or solar energy potential, accessibility to power transmission lines and natural gas networks.The outcome is a first screening of priority sites to be studied at the local scale in future projects. Early target for detailed studies are the existing salt caverns and an abandoned salt mine in the Lusitanian Basin. Natural gas storage in salt formations is being carried in the region for decades, proving the adequacy of the salt formations and demonstrating the social acceptance. Porous media aquifers in the same Lusitanian basin may also hold an interesting potential, although there is considerable uncertainty due to the scarcity of geological data about deep aquifers. The Sines industrial cluster, in SW Portugal, is another interesting target area, due to the existence of a host rock with proven containment capacity.The technologies with the best potential for application in the Portuguese geologic context seem to be CAES and Underground Gas Storage linked to Power-to-gas projects.
机译:本文介绍了在葡萄牙进行的首次筛选的方法和结果,以识别适合大规模储存可再生能源的地质构造。筛选的重点是确定适当的多孔介质岩石,盐层和火成岩,这些岩石可以用作天然气(氢气或甲烷)存储,压缩空气储能,地下抽水和地下热能存储的储层。收集,汇编到数据库中并在GIS环境中进行空间引用。 GIS和数据库已与选择地质储层的标准以及现有或预期的空间,环境和社会约束条件进行了交叉检查。第三步,根据置信度对在每个预期水库中部署每种大型储能技术的可行性进行了评估,并根据置信度进行了分类,范围从不太可能到已探明,以及靠近具有风能或太阳能潜力的区域,以及可通往输电线路的区域其结果是首次筛选了优先项目,将在未来的项目中在当地进行研究。进行详细研究的早期目标是Lusitanian盆地中现有的盐洞和一个废弃的盐矿。该地区数十年来一直在盐层中储存天然气,这证明了盐层的充分性并显示出社会认可度。尽管由于有关深层含水层的地质数据缺乏而存在相当大的不确定性,但在同一卢西塔尼亚盆地中的多孔介质含水层也可能具有有趣的潜力。葡萄牙西南部的Sines工业集群是另一个有趣的目标区域,因为存在具有经证实的围堵能力的母岩。在葡萄牙地质环境中最有潜力应用的技术似乎是CAES和地下储气库电力制天然气项目。

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