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首页> 外文期刊>The Science of the Total Environment >The role of humic substances in mitigating greenhouse gases emissions: Current knowledge and research gaps
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The role of humic substances in mitigating greenhouse gases emissions: Current knowledge and research gaps

机译:腐殖质物质在减轻温室气体排放的作用:当前的知识和研究差距

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摘要

Humic substances (HS) constitute a highly transformed fraction of natural organic matter (NOM) with a heterogeneous structure, which is rich in electron-transferring functional moieties. Because of this feature, HS display a versatile reactivity with a diversity of environmentally relevant organic and inorganic compounds either by abiotic or microbial processes. Consequently, extensive research has been conducted related to the potential of HS to drive relevant processes in bio-engineered systems, as well as in the biogeochemical cycling of key elements in natural environments. Nevertheless, the increase in the number of reports examining the relationship between HS and the microorganisms related to the production and consumption of greenhouse gases (GHG), the main drivers of global warming, has just emerged in the last years. In this paper, we discuss the importance of HS, and their analogous redox-active organic molecules (RAOM), on controlling the emission of three of the most relevant GHG due to their tight relationship with microbial activity, their abundance on the Earth's atmosphere, and their important global warming potentials: carbon dioxide (CO_2), methane (CH_4) and nitrous oxide (N_2O). The current knowledge gaps concerning the microbial component, on-site occurrence, and environmental constraints affecting these HS-mediated processes are provided. Furthermore, strategies involving the metabolic traits that GHG-consuming/HS-reducing and -oxidizing microbes display for the development of environmental engineered processes are also discussed.
机译:腐殖质物质(HS)构成具有异质结构的高度转化的天然有机物(NOM)的分数,其富含电子转移功能部分。由于该特征,HS显示了通过非生物或微生物过程的环境相关的有机和无机化合物的多样性反应性。因此,已经进行了广泛的研究,与HS驱动生物工程系统中的相关过程以及自然环境中的关键元素的生物地球化学循环。尽管如此,在过去几年中刚刚出现了研究HS和微生物与温室气体的生产和消费相关的微生物关系的报告数量,刚刚出现了全球变暖的主要驱动因素。在本文中,我们讨论了HS,以及它们类似的氧化还原活性有机分子(RAOM)的重要性,因为由于它们与微生物活动紧密的关系,它们对地球大气层的丰富,及其重要的全球变暖势:二氧化碳(CO_2),甲烷(CH_4)和氧化亚氮(N_2O)。提供了关于影响这些HS介导的过程的微生物组分,现场发生和环境约束的目前的知识间隙。此外,还讨论了涉及代谢性状的策略,即用于开发环境工程过程的消耗/ HS降低和减少微生物显示的微生物展示。

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