清洁能源交通研究:超级电容电池与复合材料创新 宁波诺丁汉大学

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AI摘要

宁波诺丁汉大学在交通研究领域致力于开发清洁能源替代方案,推动未来交通系统发展。其电化学技术专家发明了超级电容电池,结合电池与超级电容器优势,为公交车、轻轨和地铁提供无二氧化碳排放的动力。复合材料研究团队与国内外工业伙伴合作,推动绿色电动交通的复合材料科学前沿研究,促进高影响力科研成果的商业化。这些创新旨在减少化石燃料依赖,实现燃料节约和碳中和旅行,惠及中国及全球社会。

关键词: 交通研究, 超级电容电池, 复合材料, 清洁能源, 碳中和
【AI摘要】宁波诺丁汉大学在交通研究领域致力于开发清洁能源替代方案,推动未来交通系统发展。其电化学技术专家发明了超级电容电池,结合电池与超级电容器优势,为公交车、轻轨和地铁提供无二氧化碳排放的动力。复合材料研究团队与国内外工业伙伴合作,推动绿色电动交通的复合材料科学前沿研究,促进高影响力科研成果的商业化。这些创新旨在减少化石燃料依赖,实现燃料节约和碳中和旅行,惠及中国及全球社会。
关键词:交通研究 超级电容电池 复合材料 清洁能源 碳中和

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As pressures mount to find cleaner energy alternatives to fossil fuels, our world-class researchers are pioneering alternative electrical power sources that will enable the transportation system of the future. By drawing on our expertise across disciplines, industrial partnerships and research collaborations, we aim to build an international profile for high-impact transport research.

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Our experts in electrochemical technologies have invented a supercapattery – a device that combines the advantages of a battery and supercapacitors. A supercapattery’s energy content is electricity that does not release carbon dioxide, but still does the same job of powering vehicles such as buses, light railway trains and underground trains, leading to a world less dependent on fossil fuels.

Our dedicated Composite Group is working closely with national and international industrial partners to conduct research at the forefront of composite materials science to support greener, electrified transport. They drive the promotion of the commercialisation of high-impact scientific research, technologies and solutions to the composite industry. 

By helping to deliver forward-thinking, environmentally conscious systems, we will benefit societies in China and across the world, making unprecedented advances in fuel savings and carbon neutral travel.

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来源:宁波诺丁汉大学 | 查看原文