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Rising soil temperature in China and its potential ecological impact

机译:中国土壤温度上升及其潜在的生态影响

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摘要

Global warming influences a series of ecological processes and ecosystems' stability. Although comprehensive studies have been done to investigate responses of various ecosystem processes to rising air temperatures, less is known about changes in soil temperatures and their impact on below-ground processes, particularly in deep layers. Herein, we used 50 y of temperature data (1962-2011) from 360 sites in China to assess spatio-temporal changes in soil temperatures from the surface to a depth of 3.20?m. We determined, apparently for the first time, that soil surface temperature increased 31% more than air temperature, potentially leading to more carbon release to the atmosphere than predicted. Annual mean surface temperature increased by 2.07-4.04 and 0.66-2.21?°C in northern and southern China, respectively, with the greatest in winter. Warming occurred as deep as 3.20?m. The soil temperature rise was predicted to have increased soil respiration by up to 28%, reinforcing climate warming and extending the potential growing season by up to 20 d across China. However, use of only air temperature to estimate soil temperature changes would underestimate those impacts. In conclusion, these results highlighted the importance of soil warming and of using soil temperature to assess and predict soil processes.
机译:全球变暖影响一系列生态过程和生态系统的稳定性。尽管已经进行了全面的研究来调查各种生态系统过程对气温升高的响应,但是人们对土壤温度的变化及其对地下过程(尤其是深层)的影响知之甚少。本文中,我们使用了中国360个站点的y数据(1962-2011年)的50 y数据,评估了从地表到3.20?m深度的土壤温度的时空变化。我们显然是第一次确定,土壤表面温度比空气温度增加了31%,这可能导致向大气中释放的碳比预期的多。中国北部和南部的年平均地表温度分别上升了2.07-4.04和0.66-2.21°C,冬季最高。变深深度达3.20μm。据预测,土壤温度的上升将使土壤呼吸增加多达28%,从而加剧了气候变暖,并将整个中国的潜在生长期延长了长达20天。但是,仅使用空气温度来估计土壤温度变化会低估这些影响。总之,这些结果突出了土壤变暖以及利用土壤温度评估和预测土壤过程的重要性。

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