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INTEGRATED ENERGY SYSTEMS: TRANSITIONING TO CARBON-FREE ELECTRICITY, INDUSTRY, AND TRANSPORTATION

机译:综合能源系统:向无碳电力、工业和交通过渡

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摘要

On December 20,1951, researchers used energy produced by Experimental Breeder Reactor-I near Arco, Idaho, to illuminate four 200-watt lightbulbs. Since then, utilities have built commercial nuclear power plants in the United States almost exclusively to generate electricity. This has worked well alongside other power generation and transmission infrastructure-large oil- and coal-fired, natural gas turbine or hydroelectric plants, and a relatively simple electrical grid designed to deliver reliable power. Humanity is now embarking on an epic and complex energy transformation across the grid, industry, and transportation. Renewables like wind and solar are contributing an increasing share of carbon-free electricity to the grid, but that contribution is variable and hard to predict-sometimes those sources produce more electricity than the grid needs, and sometimes less.
机译:1951 年 12 月 20 日,研究人员使用爱达荷州阿科附近的实验增殖反应堆 I 产生的能量照亮了四个 200 瓦的灯泡。从那时起,公用事业公司在美国建造了商业核电站,几乎完全是为了发电。这与其他发电和输电基础设施(大型石油和燃煤、天然气涡轮机或水力发电厂)以及旨在提供可靠电力的相对简单的电网一起运作良好。人类现在正在开始一场跨越电网、工业和交通的史诗般的复杂能源转型。风能和太阳能等可再生能源为电网贡献的无碳电力份额越来越大,但这种贡献是可变的,难以预测——有时这些来源产生的电力超过电网需求,有时更少。

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