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Integration of seawater pumped storage and desalination in multi-energy systems planning: The case of copper as a key material for the energy transition

机译:多能系统规划中海水泵送储存和海水化的整合:铜的铜作为能源转型的关键材料

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摘要

Copper is required for the transformation of global energy systems, and its production is intensive in water and energy. Several studies have investigated the design of renewable energy systems for copper production, aiming at reducing its environmental footprint. Here, we present the first integrated design for desalinated water and energy supply that considers all forms of energy required in the copper production process. For this, we develop an optimization model for planning integrated multi-vector energy and water systems. The model includes-for the first time in an energy system planning model-a concept for integrated pumped-hydro storage using sweater and reverse osmosis desalination. Our results show that water-energy systems for copper production based exclusively on renewables can today achieve costs as low as those of conventional fossil-based systems, when integrating multi-vector planning and seawater pumped-hydro storage. For a case study in Chile and in fully renewable scenarios, the specific cost of supplying energy and desalinated water decreases from 520-670 euro per ton of copper at current costs to 330-360 by 2050. By 2030, using seawater pumped-hydro storage makes a fully renewable, multi-energy scenario the least-cost alternative. Such an integrated system is an enabler for reducing the environmental footprint that copper brings into the global energy transition.
机译:全球能源系统的转换需要铜,其生产在水和能量中。若干研究已经调查了可再生能源系统的铜生产系统的设计,旨在减少其环境足迹。在这里,我们展示了脱盐水和能源供应的第一个综合设计,这些设计考虑了铜生产过程所需的所有形式的能量。为此,我们开发了规划集成多矢量能量和水系统的优化模型。该模型包括在能量系统规划模型中第一次 - 使用毛衣和反渗透脱盐的集成泵送 - 水流的概念。我们的研究结果表明,在整合多向量规划和海水泵送 - 水力储存时,专门基于可再生能源的铜生产的水能系统可以实现常规化石系统的成本。在智利和完全可再生场景中进行案例研究,供应能源和脱盐水的具体成本从每吨铜520-670欧元以2050年的330-360欧元的520-370欧元降低。到2030年,使用海水泵送 - 水电储存采用完全可再生,多能量的情景,最不成本的替代品。这种集成系统是减少铜带入全球能量转换的环境足迹的推动器。

著录项

  • 来源
    《Applied Energy》 |2021年第1期|117298.1-117298.15|共15页
  • 作者单位

    Univ Stuttgart Dept Stochast Simulat & Safety Res Hydrosyst IWS SC SimTech Pfaffenwaldring 5a D-70569 Stuttgart Germany;

    Univ Stuttgart Dept Stochast Simulat & Safety Res Hydrosyst IWS SC SimTech Pfaffenwaldring 5a D-70569 Stuttgart Germany|Univ Canterbury Dept Civil & Nat Resources Engn Private Bag 4800 Christchurch New Zealand;

    Univ Stuttgart Dept Stochast Simulat & Safety Res Hydrosyst IWS SC SimTech Pfaffenwaldring 5a D-70569 Stuttgart Germany;

    Univ Chile Dept Min Engn Beauchef 850 Santiago Chile|Univ Chile Adv Min Technol Ctr AMTC Santiago 2007 Chile;

    Univ Stuttgart Inst Energy Econ & Rational Energy Use IER Hessbruhlstr 49A D-70565 Stuttgart Germany;

    LUT Univ Sch Energy Syst Yliopistonkatu 34 Lappeenranta 53850 Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multi-energy systems; Water-energy nexus; Renewables in mining; Copper production; Seawater pumped-hydro storage; Desalination;

    机译:多能量系统;水能Nexus;采矿中的可再生能源;铜生产;海水泵送 - 水力储存;海水淡化;

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