Decarbonizing China’s energy system – Modeling the transformation of the electricity, transportation, heat, and industrial sectors

Author:

Burandt ThorstenORCID,Xiong BobbyORCID,Löffler Konstantin,Oei Pao-YuORCID

Funder

German Ministry for Education and Research

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction

Reference93 articles.

1. World Bank, the Development Research Center of the State Council, China 2030: Building a Modern, Harmonious, and Creative Society, The World Bank, 1818 H Street NW, Washington, DC 20433, USA, 1st ed., ISBN 978-0-8213-9756-5; 2013.

2. How China became a leader in solar PV: an innovation system analysis;Huang;Renew Sustain Energy Rev,2016

3. Boden TA, Marland G, Andres RJ. Global, Regional, and National Fossil-Fuel CO2 Emissions, Tech. Rep., Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, U.S. Department of Energy, Oak Ridge, Tenn., U.S.A.; 2013, doi:https://doi.org/10.3334/CDIAC/00001_V2017.

4. European Commission, Emission Database for Global Atmospheric Research (EDGAR), release version 4.3.2; 2016. http://edgar.jrc.ec.europa.eu.

5. Chinese growth and dilemmas: modelling energy consumption, CO2 emissions and growth in China;Ahmad;Qual Quant,2019

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