立陶宛可再生能源景观:CCUS,氢和地热

Viltė Karaliūtė, Pijus Makauskas, Shruti Malik, Ieva Kaminskaitė-Baranauskienė, Mayur Pal
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引用次数: 0

摘要

由于大力推动减少碳排放和依赖化石能源生产,立陶宛的能源格局正在发生变化。欧盟气候指令促进对碳捕获和储存技术以及可再生能源开发的投资。CCUS、氢气和地热是一些可以促进减少碳排放并减少对化石能源依赖的技术。立陶宛已经拥有巨大的碳和氢储存潜力,过去有一个用于区域供热的地热发电厂。在这项工作中,我们重新审视了立陶宛地下的碳储存潜力,并利用原位方法对枯竭碳氢化合物油田产生氢能的潜力进行了高水平的估计。我们还评估了记录温度超过85℃的深寒武系储层地热能源开发的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lithuanian renewable energy landscape: CCUS, hydrogen and geothermal
Lithuanian energy landscape is changing because of as strong push to reduce carbon emissions and reliance of fossil based energy production. EU climate directive promotes investments into carbon capture and storage technologies along with renewable energy resource development. CCUS, hydrogen and geothermal are some technologies which could promote reduction in carbon emissions and along with reducing dependence on fossil based energy sources. Lithuania already has large potential for carbon and hydrogen storage and in past had a working geothermal power plant for district heating. In this work we revisit the carbon storage potential in Lithuania subsurface and also provide a high level estimates of potential of generating hydrogen energy from depleted hydrocarbon fields using in-situ methods. We also evaluate the prospects of development of geothermal energy production from deep Cambrian reservoirs where temperature above 85 degrees C have been documented.
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