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考虑缺氧微位点:认识并重视土壤和沉积物中的时空氧化还原异质性。

Consider the Anoxic Microsite: Acknowledging and Appreciating Spatiotemporal Redox Heterogeneity in Soils and Sediments.

作者信息

Lacroix Emily M, Aeppli Meret, Boye Kristin, Brodie Eoin, Fendorf Scott, Keiluweit Marco, Naughton Hannah R, Noël Vincent, Sihi Debjani

机构信息

Institut des Dynamiques de la Surface Terrestre (IDYST), Université de Lausanne, 1015 Lausanne, Switzerland.

Department of Earth System Science, Stanford University, Stanford, California 94305, United States.

出版信息

ACS Earth Space Chem. 2023 Aug 23;7(9):1592-1609. doi: 10.1021/acsearthspacechem.3c00032. eCollection 2023 Sep 21.

Abstract

Reduction-oxidation (redox) reactions underlie essentially all biogeochemical cycles. Like most soil properties and processes, redox is spatiotemporally heterogeneous. However, unlike other soil features, redox heterogeneity has yet to be incorporated into mainstream conceptualizations of soil biogeochemistry. Anoxic microsites, the defining feature of redox heterogeneity in bulk oxic soils and sediments, are zones of oxygen depletion in otherwise oxic environments. In this review, we suggest that anoxic microsites represent a critical component of soil function and that appreciating anoxic microsites promises to advance our understanding of soil and sediment biogeochemistry. In sections 1 and 2, we define anoxic microsites and highlight their dynamic properties, specifically anoxic microsite distribution, redox gradient magnitude, and temporality. In section 3, we describe the influence of anoxic microsites on several key elemental cycles, organic carbon, nitrogen, iron, manganese, and sulfur. In section 4, we evaluate methods for identifying and characterizing anoxic microsites, and in section 5, we highlight past and current approaches to modeling anoxic microsites. Finally, in section 6, we suggest steps for incorporating anoxic microsites and redox heterogeneities more broadly into our understanding of soils and sediments.

摘要

氧化还原反应基本上是所有生物地球化学循环的基础。与大多数土壤性质和过程一样,氧化还原在时空上是异质的。然而,与其他土壤特征不同的是,氧化还原异质性尚未纳入土壤生物地球化学的主流概念中。缺氧微位点是大块有氧土壤和沉积物中氧化还原异质性的决定性特征,是在其他有氧环境中的氧气耗尽区。在本综述中,我们认为缺氧微位点代表了土壤功能的一个关键组成部分,认识到缺氧微位点有望推进我们对土壤和沉积物生物地球化学的理解。在第1和第2节中,我们定义了缺氧微位点,并强调了它们的动态特性,特别是缺氧微位点分布、氧化还原梯度大小和时间性。在第3节中,我们描述了缺氧微位点对几个关键元素循环,即有机碳、氮、铁、锰和硫的影响。在第4节中,我们评估了识别和表征缺氧微位点的方法,在第5节中,我们强调了过去和当前模拟缺氧微位点的方法。最后,在第6节中,我们提出了将缺氧微位点和氧化还原异质性更广泛地纳入我们对土壤和沉积物理解的步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42c3/10519444/467bc2101c01/sp3c00032_0001.jpg

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