Journal of Cleaner Production · 2017 · 564 citations · 71 references
China is the largest energy consumer and CO2 emitter, with cities accounting for 85 % of national emissions, yet systematic city‑level inventories are lacking, making detailed emission source understanding essential for future climate policy. The study aims to develop methods for constructing city‑level CO2 emission inventories in China using energy balance tables. The authors compiled inventories following the IPCC territorial accounting framework across 47 sectors, 17 fossil fuels, and 9 primary products, applied the method to 24 Chinese cities, and assessed inventory uncertainties.
China is the world's largest energy consumer and CO2 emitter. Cities contribute 85% of the total CO2 emissions in China and thus are considered as the key areas for implementing policies designed for climate change adaption and CO2 emission mitigation. However, the emission inventory construction of Chinese cities has not been well researched, mainly owing to the lack of systematic statistics and poor data quality. Focusing on this research gap, we developed a set of methods for constructing CO2 emissions inventories for Chinese cities based on energy balance table. The newly constructed emission inventory is compiled in terms of the definition provided by the IPCC territorial emission accounting approach and covers 47 socioeconomic sectors, 17 fossil fuels and 9 primary industry products, which is corresponding with the national and provincial inventory. In the study, we applied the methods to compile CO2 emissions inventories for 24 common Chinese cities and examined uncertainties of the inventories. Understanding the emissions sources in Chinese cities is the basis for many climate policy and goal research in the future.
71
Reduced carbon emission estimates from fossil fuel combustion and cement production in China
Zhu Liu, Dabo Guan, Wei Wei et al. · Nature · 2015 · 1.6K citations · Full text
Carbon Sequestration, Fossil Fuels, Greenhouse Gas Emission Reduction +10