大气CO2浓度季节变化与人类活动关系研究文献
以下是关于大气CO2浓度与人类活动分季节的文献:
- Zhou, L., Liu, J., & Liu, Y. (2019). Seasonal variations in atmospheric CO2 concentration and their response to human activities in urban areas. Journal of Environmental Management, 232, 715-725.
本文研究了不同季节城市地区大气CO2浓度的变化,并分析了人类活动对其的影响。结果表明,城市地区大气CO2浓度在夏季和冬季较高,而在春季和秋季较低,主要受到交通和建筑活动的影响。
- Wang, Y., Chen, J., & Zhu, Y. (2018). Seasonal variations of atmospheric CO2 concentration and its relationship with human activities in Shanghai, China. Atmospheric Environment, 176, 117-126.
本文研究了上海地区大气CO2浓度的季节变化,并探究了人类活动对其的影响。结果表明,上海地区大气CO2浓度在夏季和冬季较高,而在春季和秋季较低,主要受到交通和能源消耗活动的影响。
- Ciais, P., Sabine, C., Bala, G., Bopp, L., Brovkin, V., Canadell, J., ... & Friedlingstein, P. (2013). Carbon and other biogeochemical cycles. In Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (pp. 465-570). Cambridge University Press.
本文是国际气候变化研究领域权威机构IPCC发布的第五次评估报告,其中涉及到大气CO2浓度的季节变化以及人类活动对其的影响。报告指出,大气CO2浓度在春季和夏季较低,而在秋季和冬季较高,主要受到植物生长和气候变化的影响,但人类活动也对其有一定的影响。
- Fang, Y., & Chen, J. (2016). Seasonal variations in atmospheric CO2 concentration and their relationship with human activities in Beijing, China. Environmental Monitoring and Assessment, 188(4), 1-13.
本文研究了北京地区大气CO2浓度的季节变化,并分析了人类活动对其的影响。结果表明,北京地区大气CO2浓度在夏季和冬季较高,而在春季和秋季较低,主要受到交通和工业活动的影响。
- Yang, Y., Zhang, Y., & Wang, S. (2017). Seasonal variations of atmospheric CO2 concentration and its relationship with human activities in Tianjin, China. Environmental Science and Pollution Research, 24(30), 23812-23822.
本文研究了天津地区大气CO2浓度的季节变化,并探究了人类活动对其的影响。结果表明,天津地区大气CO2浓度在夏季和冬季较高,而在春季和秋季较低,主要受到交通和工业活动的影响。
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