首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Surface exposure to sunlight stimulates CO2 release from permafrost soil carbon in the Arctic
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Surface exposure to sunlight stimulates CO2 release from permafrost soil carbon in the Arctic

机译:暴露在阳光下的表面会刺激北极永久冻土土壤碳释放的二氧化碳

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摘要

Recent climate change has increased arctic soil temperatures and thawed large areas of permafrost, allowing for microbial respiration of previously frozen C. Furthermore, soil destabilization from melting ice has caused an increase in thermokarst failures that expose buried C and release dissolved organic C (DOC) to surface waters. Once exposed, the fate of this C is unknown but will depend on its reactivity to sunlight and microbial attack, and the light available at the surface. In this study we manipulated water released from areas of thermokarst activity to show that newly exposed DOC is >40% more susceptible to microbial conversion to CO2 when exposed to UV light than when kept dark. When integrated over the water column of receiving rivers, this susceptibility translates to the light-stimulated bacterial activity being on average from 11% to 40% of the total areal activity in turbid versus DOC-colored rivers, respectively. The range of DOC lability to microbes seems to depend on prior light exposure, implying that sunlight may act as an amplification factor in the conversion of frozen C stores to C gases in the atmosphere.
机译:最近的气候变化增加了北极土壤温度,并解冻了大面积的多年冻土,使以前冷冻的碳的微生物呼吸成为可能。此外,土壤因融化冰而不稳定,导致热岩溶破坏增加,暴露了埋藏的碳并释放出溶解的有机碳(DOC)浮出水面。一旦暴露,这种碳的命运是未知的,但将取决于它对阳光和微生物侵袭的反应性,以及表面可用的光。在这项研究中,我们对从喀斯特地热活动区域释放的水进行了研究,结果表明,新暴露的DOC暴露于紫外光下比保持黑暗时,对微生物转化为CO2的敏感性高40%以上。当整合到接收河流的水柱上时,这种敏感性转化为光刺激的细菌活动,平均而言,混浊的河流相对于DOC色的河流平均占总区域活动的11%至40%。 DOC对微生物的易感性范围似乎取决于先前的曝光量,这意味着在将冷冻的C储存物转换为大气中的C气体时,阳光可能充当放大因子。

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