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国际研究呼吁利用经济复苏计划加大清洁能源投资力度 快报文章
气候变化快报,2020年第21期
作者:  曾静静
Microsoft Word(20Kb)  |  收藏  |  浏览/下载:405/0  |  提交时间:2020/11/05
economic recovery packeages  clean energy investment  Paris Agreement Goals  
疫情后中国清洁能源发展展望 快报文章
资源环境快报,2020年第18期
作者:  牛艺博
Microsoft Word(23Kb)  |  收藏  |  浏览/下载:410/0  |  提交时间:2020/09/29
clean energy  china  
IEA发布首次清洁能源转型峰会概要 快报文章
地球科学快报,2020年第15期
作者:  王立伟
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:334/0  |  提交时间:2020/08/10
clean energy  transition  summit  
美众议院提出解决气候危机的12条行动计划 快报文章
气候变化快报,2020年第14期
作者:  裴惠娟
Microsoft Word(21Kb)  |  收藏  |  浏览/下载:382/0  |  提交时间:2020/07/20
Climate Crisis  Clean Energy Economy  Action Plan  USA  
Chair’s Summary for IEA Clean Energy Transitions Summit 科技报告
来源:https://iea.blob.core.windows.net/assets/b33a25f6-7aaa-4fc4-a697-d87916842fd4/CETSummit2020ChairSummary.pdf
作者:  王立伟
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/15
Clean Energy  Transitions  
IEA分析COVID-19危机对清洁能源转型的影响 快报文章
气候变化快报,2020年第12期
作者:  董利苹
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:425/0  |  提交时间:2020/06/19
COVID-19  Clean Energy  Impact  
Can designs inspired by control theory keep deployment policies effective and cost-efficient as technology prices fall? 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (4)
作者:  Nunez-Jimenez, Alejandro;  Knoeri, Christof;  Hoppmann, Joern;  Hoffmann, Volker H.
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
policy design  clean energy  deployment policy  agent-based model  feed-in tariff  adjustment mechanism  solar photovoltaics  
Power generation from ambient humidity using protein nanowires 期刊论文
NATURE, 2020, 578 (7796) : 550-+
作者:  Luong, Duy X.;  Bets, Ksenia V.;  Algozeeb, Wala Ali;  Stanford, Michael G.;  Kittrell, Carter;  Chen, Weiyin;  Salvatierra, Rodrigo V.;  Ren, Muqing;  McHugh, Emily A.;  Advincula, Paul A.;  Wang, Zhe;  Bhatt, Mahesh;  Guo, Hua;  Mancevski, Vladimir;  Shahsavari, Rouzbeh;  Yakobson, Boris I.;  Tour, James M.
收藏  |  浏览/下载:85/0  |  提交时间:2020/07/03

Harvesting energy from the environment offers the promise of clean power for self-sustained systems(1,2). Known technologies-such as solar cells, thermoelectric devices and mechanical generators-have specific environmental requirements that restrict where they can be deployed and limit their potential for continuous energy production(3-5). The ubiquity of atmospheric moisture offers an alternative. However, existing moisture-based energy-harvesting technologies can produce only intermittent, brief (shorter than 50 seconds) bursts of power in the ambient environment, owing to the lack of a sustained conversion mechanism(6-12). Here we show that thin-film devices made from nanometre-scale protein wires harvested from the microbe Geobacter sulfurreducens can generate continuous electric power in the ambient environment. The devices produce a sustained voltage of around 0.5 volts across a 7-micrometre-thick film, with a current density of around 17 microamperes per square centimetre. We find the driving force behind this energy generation to be a self-maintained moisture gradient that forms within the film when the film is exposed to the humidity that is naturally present in air. Connecting several devices linearly scales up the voltage and current to power electronics. Our results demonstrate the feasibility of a continuous energy-harvesting strategy that is less restricted by location or environmental conditions than other sustainable approaches.


A new type of energy-harvesting device, based on protein nanowires from the microbe Geobacter sulforreducens, can generate a sustained power output by producing a moisture gradient across the nanowire film using natural humidity.