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Cost effective power-to-X plant using carbon dioxide from a geothermal plant to increase renewable energy penetration

机译:使用地热植物的二氧化碳具有成本效益的功率至X植物,以增加可再生能源渗透

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In the framework of a scenario with an always increasing share of generation from variable renewable sources, the need for systems able to store energy or to convert the excess generation into useful goods is becoming of paramount importance. While several projects and pilot plants deal with direct energy storage or with the conversion of the excess generation into other energetic goods (hydrogen or methane) often overlooking economic considerations, this paper proposes a cost-effective approach in which liquified methane and oxygen are produced and sold on their specific markets, which represents one of the first profitable Power-to-X applications at current market values. The paper presents the completely new and never investigated before idea of coupling the plant with a freely available source of pure carbon dioxide from a geothermal unit, thus making it possible to produce synthetic methane to be liquefied, stored and then used in other sectors of the society. The carbon dioxide coming with the geothermal fluid is no longer released in the environment as it currently naturally happens even when not going through the geothermal facility. Detailed models of the main system components were created, and an optimization procedure was carried out. Interestingly, the revenues from the sale of liquefied oxygen are well above those coming from synthetic methane and turn the system profitable. With a proper operation planning, bidding on the electricity day-ahead-market, a large hydrogen storage system proved to be unnecessary. The results of the system optimization clearly show that this kind of systems, although conceived in a very favourable condition, can become profitable only if the energy storage function is coupled with the production of other goods services. Assuming an average electricity price of 52 Euro/MWh, the plant profitability is achieved for an LNG selling price of 0.45 (sic)/kg and an LOx price around 0.30 (sic)/kg. These figures will rapidly decrease in the near future as lower electricity prices are forecasted.
机译:在一个方案的框架中,随着可变可再生源的一代始终增加,可以将能够存储能量或转换为有用的商品的系统的需求正在成为重要的重要性。虽然有几个项目和试点工厂与直接储能或转换为其他精力充沛的商品(氢或甲烷)经常忽略经济考虑,但提出了一种成本效益的方法,其中产生液化甲烷和氧气在其特定市场上销售,该市场代表当前市场价值的第一个有利可图的电源到X应用中的一个。本文呈现出全新的,从未研究过的植物与从地热部件的可自由用二氧化碳源偶联,从而可以制造合成甲烷待液化,储存,然后在其他部门中使用社会。随着地热设施的情况下,随着地热流体的二氧化碳不再释放到环境中。创建了主要系统组件的详细模型,并进行了优化程序。有趣的是,液化氧销售的收入远高于来自合成甲烷的那些,并转动系统盈利。通过适当的运营计划,竞标电力日期市场,大型储氢系统证明是不必要的。系统优化的结果清楚地表明这种系统,虽然在非常有利的情况下构思,但只有在能量存储功能与其他商品服务的生产相结合时,才能实现有利可图。假设平均电力价格为52欧元/兆瓦,植物盈利能力达到0.45(SIC)/千克的LNG销售价格,左右10.30(SIC)/ kg。随着预测的电价较低,这些数字将在不久的将来迅速下降。

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