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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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楼主: breath-focus
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How Low Can We Go? The Implications of Delayed Ratcheting and Negative Emissions Technologies on Achrm global mitigation path. However, the goals of the Paris Agreement highlight that current pledges are insufficient. It is, therefore, necessary to ratchet-up parties’ future mitigation pledges in the near-term. The ambitious goals of remaining well below 2 °C and pursuing reductions towards 1.5 °C
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Analysis of the Relative Roles of Supply-Side and Demand-Side Measures in Tackling the Global 1.5 °Cductions in order to hold the increase in global average temperature below 1.5 °C above pre-industrial levels. It also evaluates the macroeconomic implications of the climate mitigation policy. The analysis is carried out using the global hybrid TIAM-MACRO model. The major findings show that a rapid
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A Scandinavian Transition Towards a Carbon-Neutral Energy Systemmport of biofuels and no use of CO. storage. The Scandinavian electricity sector is already highly renewable and carbon neutrality requires extensive changes in other parts of the energy system, including the building, transport and industry sectors. The analysis is done with a stochastic TIMES mode
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en the nucleobases adenine, thymine, guanine, and cytosine as well as on the hydrophobic-hydrophilic balance in aqueous media. This complex system of multiple supramolecular interactions is the product of a long-term evolutionary process and thus highly optimized to serve its biological functions su
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Tom Kober,Evangelos Panos,Kathrin Volkarten the nucleobases adenine, thymine, guanine, and cytosine as well as on the hydrophobic-hydrophilic balance in aqueous media. This complex system of multiple supramolecular interactions is the product of a long-term evolutionary process and thus highly optimized to serve its biological functions su
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Antti Lehtilä,Tiina Koljonen DNAs, one needs to have detailed pictures on the structural, thermodynamic, and kinetic properties of metal ion interactions with these biomacromolecules. In this review we first compile the physicochemical properties of metal ions found and used in combination with nucleic acids in solution. The m
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