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Titlebook: Limiting Global Warming to Well Below 2 °C: Energy System Modelling and Policy Development; George Giannakidis,Kenneth Karlsson,Brian ó Ga

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書(shū)目名稱(chēng)Limiting Global Warming to Well Below 2 °C: Energy System Modelling and Policy Development
編輯George Giannakidis,Kenneth Karlsson,Brian ó Gallac
視頻videohttp://file.papertrans.cn/587/586185/586185.mp4
概述Brings together techniques and analyses that point the way toward a reduction in greenhouse gas emissions and a limit to global warming of less than 2°C.Supports the Special Report of the Intergovernm
叢書(shū)名稱(chēng)Lecture Notes in Energy
圖書(shū)封面Titlebook: Limiting Global Warming to Well Below 2 °C: Energy System Modelling and Policy Development;  George Giannakidis,Kenneth Karlsson,Brian ó Ga
描述.This book presents the energy system roadmaps necessary to limit global temperature increase to below 2°C, in order to avoid the catastrophic impacts of climate change. It provides a unique perspective on and critical understanding of the feasibility of a well-below-2°C world by exploring energy system pathways, technology innovations, behaviour change and the macro-economic impacts of achieving carbon neutrality by mid-century. The transformative changes in the energy transition are explored using energy systems models and scenario analyses that are applied to various cities, countries and at a global scale to offer scientific evidence to underpin complex policy decisions relating to climate change mitigation and interrelated issues like energy security and the energy–water nexus. It includes several chapters directly related to the Nationally Determined Contributions proposed in the context of the recent Paris Agreement on Climate Change..?.In summary, the book collates a range of concrete analyses at different scales from around the globe, revisiting the roles of countries, cities and local communities in pathways to significantly reduce greenhouse gas emissions and make a well
出版日期Book 2018
關(guān)鍵詞Energy Systems Model; Renewable Energy Technology; Greenhouse Gas Emissions; Climate Change; Innovation;
版次1
doihttps://doi.org/10.1007/978-3-319-74424-7
isbn_softcover978-3-030-08989-4
isbn_ebook978-3-319-74424-7Series ISSN 2195-1284 Series E-ISSN 2195-1292
issn_series 2195-1284
copyrightSpringer International Publishing AG, part of Springer Nature 2018
The information of publication is updating

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Maryse Labriet,George Giannakidis,Kenneth Karlsson,Brian ó Gallachóirmodynamic properties on the metal ion-nucleic acid interactions, especially NMR can be used to extract information on the kinetics of ligand exchange rates of the metal ions applied. The final section deals with the influence of anions, buffers, and the solvent permittivity on the binding equilibria
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Tom Kober,Evangelos Panos,Kathrin Volkart ligand-like nucleosides and suitable transition metal ions culminated in the development of a plethora of artificial base-pairing systems termed “metal base-pairs” which were shown to strongly enhance the DNA duplex stability. Furthermore, they show great potential for the use of DNA as a molecular
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Antti Lehtil?,Tiina Koljonenmodynamic properties on the metal ion-nucleic acid interactions, especially NMR can be used to extract information on the kinetics of ligand exchange rates of the metal ions applied. The final section deals with the influence of anions, buffers, and the solvent permittivity on the binding equilibria
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Babak Mousavi,Markus Blesl ligand-like nucleosides and suitable transition metal ions culminated in the development of a plethora of artificial base-pairing systems termed “metal base-pairs” which were shown to strongly enhance the DNA duplex stability. Furthermore, they show great potential for the use of DNA as a molecular
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modynamic properties on the metal ion-nucleic acid interactions, especially NMR can be used to extract information on the kinetics of ligand exchange rates of the metal ions applied. The final section deals with the influence of anions, buffers, and the solvent permittivity on the binding equilibria
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