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Realizing Terawatt-Scale Solar Electricity: Nanotechnology-Enabled Physical Mechanisms and Material Properties

机译:实现兆瓦级太阳能发电:纳米技术推动的物理机制和材料特性

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摘要

Achieving a sustainable energy system is one of the defining challenges of the forthcoming decades. The importance and difficulty of developing an energy source that can replace the existing electrical infrastructure is often termed the terawatt (TW) challenge, which refers to the fact that to supply the energy demands of the globe, truly massive amounts of electricity—TWs—are needed [1], [2]. Since the term received broad public airing in 2005, addressing the TW challenge has been given additional impetus and become time critical due to the convergence of multiple issues including global warming; the scarcity, uneven geographical distribution, and cost of conventional resources, particularly oil; and other factors such as aging of existing infrastructure, the desirability of local electricity production, and the creation of jobs. At the same time that meeting the TW challenge has become more important, the continuing rapid expansion of renewable technologies has simultaneously offered a solution to the seemingly intractable problem. Seven years since the term was coined, the installed photovoltaic (PV) capacity has quadrupled, and the yearly PV installations in Germany, Spain, and Japan more than supplies the electricity due to growth in electricity demand. Yet even in these countries, the overall fraction of the electricity demand met by PV installations is only a few percent. For PV energy to make a larger contribution, both in the United States and worldwide, it must continue its rapid growth and expansion.
机译:实现可持续的能源系统是未来几十年的主要挑战之一。开发可替代现有电气基础设施的能源的重要性和困难通常被称为兆瓦(TW)挑战,这是指为满足全球能源需求,真正大量的电力-TW需要[1],[2]。自从2005年这个词在全球广泛公开播放以来,由于包括全球变暖在内的多个问题的融合,解决TW挑战的动力进一步增强,并且变得至关重要。常规资源,特别是石油的稀缺,地理分布不均和成本;其他因素,例如现有基础设施的老化,当地电力生产的可取性以及创造就业机会。在迎接TW挑战变得越来越重要的同时,可再生技术的持续快速发展也为看似棘手的问题提供了解决方案。自该术语诞生以来的七年里,光伏(PV)的安装容量增长了三倍,并且由于电力需求的增长,德国,西班牙和日本每年的光伏安装量超过了电力供应。但是即使在这些国家中,光伏装置所满足的总电力需求也仅占百分之几。为了在美国乃至全球范围内为光伏能源做出更大的贡献,它必须继续快速增长和扩张。

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