The roles of environmental conditions in the pollutant emission-induced gross primary production change: Co-contribution of meteorological fields and regulation of its background gradients

IF 3 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL Progress in Physical Geography-Earth and Environment Pub Date : 2023-07-10 DOI:10.1177/03091333231186893
Xuan Gui, Lunche Wang, Qian Cao, Shiyu Li, Weixia Jiang, Shaoqiang Wang
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Abstract

Anthropogenic emissions affect vegetation photosynthesis and carbon flux through meteorological variations induced by aerosols and clouds. However, the insufficient consideration of meteorological conditions limits the understanding of relevant mechanisms, and further inhibits the projection of future terrestrial carbon balance. Based on multiple sets of model simulations, we characterized changes in gross primary production (GPP) due to three typical individual pollutants emissions (black carbon, organic carbon, and sulfate), quantified the relative contributions of co-varied environmental factors, and explored the regulatory roles of background meteorological conditions across China. Our results showed that the heterogeneous GPP enhancement induced by emissions was dominated by cloud cover (CC) change. During its short-term effect, air temperature (Tair), vapor pressure deficit (VPD), and radiation (both quality and quantity) played a collectively non-negligible role in GPP variation, among which the universal diffuse radiation fertilization effect was generally far less than the benefits of brighter, cooler, and wetter environmental conditions. However, the sensitivity of GPP to an individual environmental variable was also altered by background meteorological gradients, whose changing pattern differed substantially among factors, indicating that the meteorological-regulated vegetation optimal photosynthetic range was a trade-off among heat, water, and light instead of being controlled by the univariable. This study implies that a deeper understanding of concurrent environmental variables is an effective way to reduce uncertainties in assessing the terrestrial carbon cycle perturbation exerted by human-induced emissions, especially under future scenarios with ongoing climate change.
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环境条件在污染物排放引起的初级生产总值变化中的作用:气象场的共同贡献及其背景梯度调控
人为排放通过气溶胶和云引起的气象变化影响植被光合作用和碳通量。然而,由于气象条件的考虑不足,限制了对相关机制的认识,并进一步抑制了对未来陆地碳平衡的预测。基于多组模式模拟,研究了三种典型单项污染物(黑碳、有机碳和硫酸盐)排放对中国初级生产总值(GPP)的影响,量化了共变环境因子的相对贡献,并探讨了背景气象条件对中国初级生产总值(GPP)的调节作用。研究结果表明,排放引起的非均质GPP增强主要受云层(CC)变化的影响。在短期效应中,气温(Tair)、水汽压亏缺(VPD)和辐射(包括质量和数量)对GPP的变化起着不可忽视的共同作用,其中普遍的漫射辐射施肥效应通常远小于更亮、更冷和更湿的环境条件带来的效益。然而,GPP对单个环境变量的敏感性也会受到背景气象梯度的影响,其变化模式在各因子之间存在较大差异,表明气象调节的植被最佳光合作用范围是热、水、光三者之间的权衡,而非单变量控制。该研究表明,深入了解并发环境变量是减少评估人类排放对陆地碳循环扰动的不确定性的有效途径,特别是在气候持续变化的未来情景下。
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来源期刊
CiteScore
7.20
自引率
5.10%
发文量
53
审稿时长
>12 weeks
期刊介绍: Progress in Physical Geography is a peer-reviewed, international journal, encompassing an interdisciplinary approach incorporating the latest developments and debates within Physical Geography and interrelated fields across the Earth, Biological and Ecological System Sciences.
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