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兰德公司通过绿色基础设施管理城市降水 快报文章
资源环境快报,2020年第22期
作者:  牛艺博
Microsoft Word(15Kb)  |  收藏  |  浏览/下载:417/1  |  提交时间:2020/11/30
RAND  Green Infrastructure  city  Heavy Rainfall  
世界银行报告提出改善空气质量的关键要素 快报文章
资源环境快报,2020年第22期
作者:  廖 琴
Microsoft Word(19Kb)  |  收藏  |  浏览/下载:427/0  |  提交时间:2020/11/30
Air Pollution  Lessons  Mexico City  Beijing  Delhi  
Brookings:美国百大城市的减排承诺与进展 快报文章
气候变化快报,2020年第22期
作者:  刘燕飞
Microsoft Word(19Kb)  |  收藏  |  浏览/下载:420/1  |  提交时间:2020/11/20
Pledges  Progress  Greenhouse Gas Emissions Reductions  City  
多机构评估城市层面的气候行动及其协同效益 快报文章
气候变化快报,2020年第18期
作者:  刘燕飞
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:365/1  |  提交时间:2020/09/20
Climate co-benefits  Climate Change Mitigation  Climate Action  City  
Retrospect driving forces and forecasting reduction potentials of energy-related industrial carbon emissions from China's manufacturing at city level 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (7)
作者:  Su, Yongxian;  Wang, Yilong;  Zheng, Bo;  Ciais, Philippe;  Wu, Jianping;  Chen, Xiuzhi;  Wang, Yang;  Wang, Changjian;  Ye, Yuyao;  Li, Qian;  Zhang, Chaoqun;  Zhang, Hongou;  Huang, Guangqing;  Huang, Ningsheng;  Lafortezza, Raffaele
收藏  |  浏览/下载:13/0  |  提交时间:2020/08/18
carbon emission mitigation  city level  manufacturing  scenario design  carbon emission driver  mitigation strategy  
Structure of the SARS-CoV-2 spike receptor-binding domain bound to the ACE2 receptor 期刊论文
NATURE, 2020, 581 (7807) : 215-+
作者:  Goudeau, Jerome;  Samaddar, Madhuja;  Bohnert, K. Adam;  Kenyon, Cynthia
收藏  |  浏览/下载:23/0  |  提交时间:2020/07/03

A new and highly pathogenic coronavirus (severe acute respiratory syndrome coronavirus-2, SARS-CoV-2) caused an outbreak in Wuhan city, Hubei province, China, starting from December 2019 that quickly spread nationwide and to other countries around the world(1-3). Here, to better understand the initial step of infection at an atomic level, we determined the crystal structure of the receptor-binding domain (RBD) of the spike protein of SARS-CoV-2 bound to the cell receptor ACE2. The overall ACE2-binding mode of the SARS-CoV-2 RBD is nearly identical to that of the SARS-CoV RBD, which also uses ACE2 as the cell receptor(4). Structural analysis identified residues in the SARS-CoV-2 RBD that are essential for ACE2 binding, the majority of which either are highly conserved or share similar side chain properties with those in the SARS-CoV RBD. Such similarity in structure and sequence strongly indicate convergent evolution between the SARS-CoV-2 and SARS-CoV RBDs for improved binding to ACE2, although SARS-CoV-2 does not cluster within SARS and SARS-related coronaviruses(1-3,5). The epitopes of two SARS-CoV antibodies that target the RBD are also analysed for binding to the SARS-CoV-2 RBD, providing insights into the future identification of cross-reactive antibodies.


  
Metabolic relationships between cities and hinterland: a political-industrial ecology of energy metabolism of Saint-Nazaire metropolitan and port area (France) 期刊论文
ECOLOGICAL ECONOMICS, 2020, 167
作者:  Bahers, Jean-Baptiste;  Tanguy, Audrey;  Pincetl, Stephanie
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/02
Energy flows  Urban metabolism  Energy transition  Political-industrial ecology  City-hinterland  
Entanglement of two quantum memories via fibres over dozens of kilometres 期刊论文
NATURE, 2020, 578 (7794) : 240-+
作者:  Cabrita, Rita;  Lauss, Martin;  Sanna, Adriana;  Donia, Marco;  Larsen, Mathilde Skaarup;  Mitra, Shamik;  Johansson, Iva;  Phung, Bengt;  Harbst, Katja;  Vallon-Christersson, Johan;  van Schoiack, Alison;  Loevgren, Kristina;  Warren, Sarah;  Jirstroem, Karin;  Olsson, Hakan;  Pietras, Kristian;  Ingvar, Christian;  Isaksson, Karolin;  Schadendorf, Dirk;  Schmidt, Henrik;  Bastholt, Lars;  Carneiro, Ana;  Wargo, Jennifer A.;  Svane, Inge Marie;  Jonsson, Goran
收藏  |  浏览/下载:27/0  |  提交时间:2020/07/03

A quantum internet that connects remote quantum processors(1,2) should enable a number of revolutionary applications such as distributed quantum computing. Its realization will rely on entanglement of remote quantum memories over long distances. Despite enormous progress(3-12), at present the maximal physical separation achieved between two nodes is 1.3 kilometres(10), and challenges for longer distances remain. Here we demonstrate entanglement of two atomic ensembles in one laboratory via photon transmission through city-scale optical fibres. The atomic ensembles function as quantum memories that store quantum states. We use cavity enhancement to efficiently create atom-photon entanglement(13-15) and we use quantum frequency conversion(16) to shift the atomic wavelength to telecommunications wavelengths. We realize entanglement over 22 kilometres of field-deployed fibres via two-photon interference(17,18) and entanglement over 50 kilometres of coiled fibres via single-photon interference(19). Our experiment could be extended to nodes physically separated by similar distances, which would thus form a functional segment of the atomic quantum network, paving the way towards establishing atomic entanglement over many nodes and over much longer distances.