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苏醒:气候变化下,永久冻土融化土壤中休眠化学物质的潜在释放。

Awakening: Potential Release of Dormant Chemicals from Thawing Permafrost Soils under Climate Change.

机构信息

Center for Volatile Interactions (VOLT), Department of Biology, University of Copenhagen, Copenhagen Ø 2100, Denmark.

State Key Laboratory of Cryospheric Sciences, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

Environ Sci Technol. 2024 Nov 19;58(46):20336-20344. doi: 10.1021/acs.est.4c06014. Epub 2024 Nov 1.

DOI:10.1021/acs.est.4c06014
PMID:39484699
Abstract

Permafrost is a crucial part of the Earth's cryosphere. These millennia-old frozen soils not only are significant carbon reservoirs but also store a variety of chemicals. Accelerated permafrost thaw due to global warming leads to profound consequences such as infrastructure damage, hydrological changes, and, notably, environmental concerns from the release of various chemicals. In this perspective, we metaphorically term long-preserved substances as "dormant chemicals" that experience an "awakening" during permafrost thaw. We begin by providing a comprehensive overview and categorization of these chemicals and their potential transformations, utilizing a combination of field observations, laboratory studies, and modeling approaches to assess their environmental impacts. Following this, we put forward several perspectives on how to enhance the scientific understanding of their ensuing environmental impacts in the context of climate change. Ultimately, we advocate for broader research engagement in permafrost exploration and emphasize the need for extensive environmental chemical studies. This will significantly enhance our understanding of the consequences of permafrost thaw and its broader impact on other ecosystems under rapid climate warming.

摘要

永久冻土是地球冰冻圈的重要组成部分。这些存在了数千年之久的冻土不仅是重要的碳储存库,还储存着各种化学物质。由于全球变暖导致的永久冻土加速融化,会引发基础设施破坏、水文变化等深远后果,尤其是各种化学物质释放所带来的环境问题。从这个角度来看,我们将长期保存的物质比喻为“休眠化学物质”,它们在永久冻土融化过程中“苏醒”。首先,我们将全面概述和分类这些化学物质及其潜在的转化过程,利用现场观测、实验室研究和建模方法相结合,评估它们对环境的影响。接下来,我们提出了一些观点,以增强对这些化学物质在气候变化背景下所带来的环境影响的科学认识。最终,我们倡导在永久冻土探索方面开展更广泛的研究,并强调需要进行广泛的环境化学研究。这将极大地提高我们对永久冻土融化的后果及其对快速气候变暖下其他生态系统的更广泛影响的理解。

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