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地震加速了青藏高原土壤的二氧化碳排放速率。

Earthquakes Have Accelerated the Carbon Dioxide Emission Rate of Soils on the Qinghai-Tibet Plateau.

作者信息

Shi Peijun, Hu Xiaokang, Yang Heyi, Jiang Lu, Ma Yonggui, Tang Haiping, Zhou Qiang, Liu Fenggui, Liu Lianyou

机构信息

State Key Laboratory of Earth Surface Processes and Resource Ecology, Beijing Normal University, Beijing, China.

Key Laboratory of Environmental Change and Natural Disaster, MOE, Beijing Normal University, Beijing, China.

出版信息

Glob Chang Biol. 2025 Jan;31(1):e70024. doi: 10.1111/gcb.70024.

Abstract

The Qinghai-Tibet Plateau (QTP) has an extensive frozen soil distribution and intense geological tectonic activity. Our surveys reveal that Qinghai-Tibet Plateau earthquakes can not only damage infrastructure but also significantly impact carbon dioxide emissions. Fissures created by earthquakes expose deep, frozen soils to the air and, in turn, accelerate soil carbon emissions. We measured average soil carbon emission rates of 968.53 g CO m·a on the fissure sidewall and 514.79 g CO m·a at the fissure bottom. We estimated that the total soil carbon emission flux from fissures caused by M ≥ 6.9 earthquakes on the Qinghai-Tibet Plateau from 326 B.C. to 2022 is 1.83 × 10 g CO a; this value is equivalent to 0.51% ~ 1.48% and 2.34% ~ 5.14% of the increased annual average carbon sink resulting from the national ecological restoration projects targeting forest protection and grassland conservation in China, respectively. These earthquake fissures thus increased the soil carbon emission rate by 0.71 g CO m·a and significantly increased the total carbon emissions. This finding shows that repairing earthquake fissures could play a very important role in coping with global climate change.

摘要

青藏高原冻土分布广泛,地质构造活动强烈。我们的调查显示,青藏高原地震不仅会破坏基础设施,还会对二氧化碳排放产生重大影响。地震产生的裂缝使深层冻土暴露于空气中,进而加速土壤碳排放。我们测得裂缝侧壁的平均土壤碳排放速率为968.53克二氧化碳每平方米每年,裂缝底部为514.79克二氧化碳每平方米每年。我们估计,公元前326年至2022年,青藏高原M≥6.9级地震产生的裂缝的土壤碳排放总通量为1.83×10克二氧化碳每年;该值分别相当于中国针对森林保护和草原保护的国家生态修复项目导致的年平均碳汇增加量的0.51%至1.48%和2.34%至5.14%。因此,这些地震裂缝使土壤碳排放速率增加了0.71克二氧化碳每平方米每年,并显著增加了碳排放总量。这一发现表明,修复地震裂缝在应对全球气候变化方面可能发挥非常重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b458/11724165/f4680c80454b/GCB-31-e70024-g003.jpg

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