Examining the uncertainty of carbon emission changes: A systematic approach based on peak simulation and resilience assessment

2021 ◽  
Vol 91 ◽  
pp. 106667
Author(s):  
Xuezhu Cui ◽  
Kuokuo Zhao ◽  
Zhanhang Zhou ◽  
Peixuan Huang
Atmosphere ◽  
2020 ◽  
Vol 11 (6) ◽  
pp. 597
Author(s):  
Young Yoon ◽  
Yoon-Kyung Kim ◽  
Jinsoo Kim

This study investigated the driving factors of embodied carbon emission changes in manufacturing trades through structural decomposition analysis. For empirical analysis, we developed an environmental multiregional input–output model for Korea, Japan, and China for 1995–2009. The three countries, which are economically and environmentally significant in Asia, are not only tightly linked economically through global value chains, but also close geographically, sharing various environmental issues. The results show that China is a net exporter of embodied carbon emissions to Japan and Korea, despite a substantial trade deficit. Its exports are more carbon-intensive than its imports from Japan and Korea. China’s embodied emissions were mainly affected by a change in carbon-intensive production and trade structure, and Japan’s and Korea’s were affected by China’s final demand. At the sectoral level, “Electrical and Optical Equipment”, “Basic Metals and Fabricated Metal”, and “Textiles and Textile Products” mainly affected the embodied carbon emission changes in these three countries. As a result, a considerable share of carbon-intensive production has shifted to China and increased consumption of China’s final products and services in the manufacturing industries, resulting in a significant increase in embodied carbon emissions. Additionally, our findings at the sectoral level could provide important evidence regarding the effective environmental policies that enable sustainable industries. With the increasing interest in the embodied carbon emissions, future research would pay more attention to the bilateral trades of major carbon-emitting countries and multilateral trades.


2021 ◽  
Vol 2 (1) ◽  
pp. 21-29
Author(s):  
Ling Zhang

Port carbon emission is a general term for greenhouse gas emissions generated by ports in production activities and by ships in port areas during navigation and berthing. Accurate measurement of port carbon emissions and analysis of the time series characteristics of port carbon emissions are the prerequisite and foundation for revealing the deep mechanism of port carbon emission changes, which is of great significance to China's port carbon emission reduction. The article will refer to the relevant carbon emission measurement process and methods, take Shanghai port during 2010-2019 as the research object, construct a carbon emission measurement model of Shanghai port, and quantitatively analyze the port carbon emission based on the measurement model and the collected data, and study the change trend and characteristics of carbon dioxide emission of Shanghai port, so as to further supplement and improve the carbon emission knowledge system of the port industry and promote China's port This will further improve the carbon emission knowledge system of the port industry and promote the sustainable development of China's ports.


2012 ◽  
Vol 164 ◽  
pp. 302-305
Author(s):  
Zhuo Ma ◽  
Xiao Gang He ◽  
Xun Zhou Tong ◽  
Hai Yan Duan ◽  
Xian En Wang ◽  
...  

To make great efforts for energy saving and promote low-carbon transition of industrial development pattern have been the most crucial tasks for Changchun industrial developmen. Using Logarithmic Mean Divisia Index (LMDI) mode decomposes the carbon emission influencing factors of the industrial department in Changchun, and study on the effects of factors on the carbon emissions of industrial energy consumption. The result shows that the major factors for carbon emissions of industrial energy consumption in Changchun are economic development, the population size and the industrialization rate, and the key factors for the carbon emission changes in industrial department of Changchun are the energy consumption structure and the energy intensity.


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