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Power-to-ammonia in future North European 100 % renewable power and heat system

机译:未来北欧的氨转化为100%可再生能源和热力系统

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摘要

Power-to-gas and other chemicals-based storages are often suggested for energy systems with high shares of variable renewable energy. Here we study the North European power and district heat system with alternative long-term storage, the power-to-ammonia (P2A) technology. Assuming fully renewable power and heat sectors and large-scale electrification of road transport, we perform simultaneous optimization of capacity investments and dispatch scheduling of wind, solar, hydro and thermal power, energy storages as well as transmission, focusing on year 2050. We find that P2A has three major roles: it provides renewable feedstock to fertilizer industry and it contributes significantly to system balancing over both time (energy storage) and space (energy transfer). The marginal cost of power-based ammonia production in the studied scenarios varied between 431 and 528 (sic)/t, which is in the range of recent ammonia prices. Costs of P2A plants were dominated by electrolysis. In the power and heat sector, with our cost assumptions, P2A becomes competitive compared to fossil natural gas only if gas price or CO2 emission price rises above 70 (sic)/MWh or 200 (sic)/tCO(2). (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通常建议将电能转换为天然气和其他基于化学物质的存储设备用于可变可再生能源份额较高的能源系统。在这里,我们研究了北欧电力和区域供热系统,以及可替代的长期存储电力对氨(P2A)技术。假设完全可再生的电力和热力行业以及道路运输的大规模电气化,我们以2050年为重点,同时进行容量投资的优化和风能,太阳能,水力和火力发电,能源存储以及输电的调度调度。 P2A具有三个主要作用:它为化肥工业提供可再生原料,并且在时间(储能)和空间(能量转移)方面为系统平衡做出了重大贡献。在所研究的情景中,基于动力的氨生产的边际成本在431至528(标准煤)/吨之间变化,这在最近的氨价格范围内。 P2A工厂的成本主要由电解法决定。在电力和热力行业中,根据我们的成本假设,只有当天然气价格或CO2排放价格上升到70(sic)/ MWh或200(sic)/ tCO(2)以上时,P2A才比化石天然气更具竞争力。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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