Developing a High-Resolution Emission Inventory of China’s Aviation Sector Using Real-World Flight Trajectory Data

巡航 航空 环境科学 高度(三角形) 气象学 中国 民用航空 排放清单 航空学 工程类 空气质量指数 地理 航空航天工程 数学 几何学 考古
作者
Jingran Zhang,Shaojun Zhang,Xiaole Zhang,Jing Wang,Ye Wu,Jiming Hao
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (9): 5743-5752 被引量:56
标识
DOI:10.1021/acs.est.1c08741
摘要

Economic growth and globalization have led to a surge in civil aviation transportation demand. Among the major economies in the world, China has experienced a 12-fold increase in terms of total passenger aviation traffic volume since 2000 and is expected to be the largest aviation market soon. To better understand the environmental impacts of China's aviation sector, this study developed a real-world flight trajectory-based emission inventory, which enabled the fine-grained characterization of four-dimensional (time, longitude, latitude, and altitude) emissions of various flight stages. Our results indicated that fuel consumption and CO2 emissions showed two peaks in altitude distribution: below 1,000 m and between 8,000 and 12,000 m. Various pollutants depicted different vertical distributions; for example, nitrogen oxides (NOX) had a higher fraction during the high-altitude cruise stage due to the thermal NOX mechanism, while hydrocarbons had a dominant fraction at the low-altitude stages due to the incomplete combustion under low-load conditions. This improved aviation emission inventory approach identified that total emissions of CO2 and air pollutants from short-distance domestic flights would be significantly underestimated by the conventional great-circle-based approach due to underrepresented calculation parameters (particularly, flight distance, duration, and cruise altitude). Therefore, we suggest that more real-world aviation flight information, especially actual trajectory records, should be utilized to improve assessments of the environmental impacts of aviation.
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