Roidt Mario, Chini Christopher M, Stillwell Ashlynn S, Cominola Andrea
Chair of Smart Water Networks, Technische Universität Berlin, Berlin, Germany.
Einstein Center Digital Future, Berlin, Germany.
Environ Sci Technol Lett. 2020 Jul 20;7(9):683-689. doi: 10.1021/acs.estlett.0c00381. eCollection 2020 Sep 8.
Drastic changes in electricity demand have been observed since March 2020 in Europe, after several countries implemented lockdown-like measures to contain the spread of COVID-19. We investigate the sensitivity of the electricity-water nexus in the European electric grid to large-scale behavior changes during the COVID-19 pandemic lockdown-like measures. We quantify changes in the blue virtual water trade between five European countries heavily affected by COVID-19 during the same period. As a result, the consumptive water footprint of thermal power plant operations in Europe decreased by 1.77 × 10 m/day during the COVID-19 lockdowns, compared to the average of the past four years. Reduced electricity demand accounts for 16% (0.29 × 10 m/day) of the decrease, while the remainder is attributable to changes in the electricity generation mix toward less water-intensive technologies before 2020 and during lockdowns. Virtual water transfers associated with electricity were also affected: Italy, a hotspot of COVID-19, reduced its water footprint by 8.4% and its virtual water imports by 70,700 m/day. Germany and France slightly reduced their domestic water footprint of electricity but increased their virtual water imports. These findings improve our understanding of the impacts of large-scale behavior and technological changes to the European electricity-water nexus.
自2020年3月以来,在几个国家实施类似封锁的措施以遏制新冠病毒传播之后,欧洲的电力需求出现了急剧变化。我们研究了欧洲电网中电力-水关联对新冠疫情期间类似封锁措施下大规模行为变化的敏感性。我们量化了同期受新冠疫情严重影响的五个欧洲国家之间蓝色虚拟水贸易的变化。结果显示,与过去四年的平均水平相比,新冠疫情封锁期间欧洲热电厂运营的消费水足迹每天减少了1.77×10立方米。电力需求下降占减少量的16%(0.29×10立方米/天),其余部分归因于2020年之前及封锁期间发电结构向用水强度较低的技术转变。与电力相关的虚拟水转移也受到了影响:作为新冠疫情热点地区的意大利,其水足迹减少了8.4%,虚拟水进口量每天减少了70700立方米。德国和法国国内电力的水足迹略有减少,但虚拟水进口量增加。这些发现增进了我们对大规模行为和技术变化对欧洲电力-水关联影响的理解。