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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Reaching a 1.5 degrees C target: socio-technical challenges for a rapid transition to low-carbon electricity systems
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Reaching a 1.5 degrees C target: socio-technical challenges for a rapid transition to low-carbon electricity systems

机译:达到1.5摄氏度的目标:社会技术挑战对低碳电力系统的快速过渡

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摘要

A 1.5 degrees C global average target implies that we should no longer focus on merely incremental emissions reductions from the electricity system, but rather on fundamentally re-envisaging a system that, sooner rather than later, becomes carbon free. Many low-carbon technologies are surpassing mainstream predictions for both uptake and cost reduction. Their deployment is beginning to be disruptive within established systems. 'Smart technologies' are being developed to address emerging challenges of system integration, but their rates of future deployment remain uncertain. We argue that transition towards a system that can fully displace carbon generation sources will require expanding the focus of our efforts beyond technical solutions. Recognizing that change has social and technical dimensions, and that these interact strongly, we set out a socio-technical review that covers electricity infrastructure, citizens, business models and governance. It describes some of the sociotechnical challenges that need to be addressed for the successful transition of the existing electricity systems. We conclude that a socio-technical understanding of electricity system transitions offers new and better insights into the potential and challenges for rapid decarbonization.& para;& para;This article is part of the theme issue 'The Paris Agreement: understanding the physical and social challenges for a warming world of 1.5 degrees C above preindustrial levels'.
机译:1.5摄氏度的全球平均目标意味着我们不应再关注电力系统的增量排放,而是从根本上重新设想一个系统,而不是以后,成为碳自由。许多低碳技术正在超越主流预测,用于摄取和降低成本。他们的部署在已建立的系统内开始具有中断。正在制定“智能技术”以解决系统集成的新出现挑战,但它们的未来部署率仍然不确定。我们认为,向一个能够完全取代碳生成来源的系统的转型将需要扩展我们超越技术解决方案之外的努力的重点。认识到改变具有社会和技术的尺寸,这些互动强劲,我们阐述了一个社会技术审查,涵盖了电力基础设施,公民,商业模式和治理。它描述了需要解决现有电力系统的成功转型的一些社会技术挑战。我们得出结论,对电力系统过渡的社会技术理解为快速脱碳的潜在和挑战提供了新的和更好的见解。&帕拉;本文是主题问题的一部分“巴黎协定”:了解物理和社会预测世界上高于预生产水平的变暖世界的挑战。

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