量化两种落基山土壤岩源碳对有机碳周转的影响:何时需要岩源碳校正?

IF 3.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Elizabeth Williams, Corey Lawrence
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引用次数: 0

摘要

来自沉积岩的岩相有机碳(OCpetro)是土壤有机碳(SOC)的一个经常被忽视和量化不足的来源,它可能影响测量或模拟的SOC组成、年龄和稳定性。在这项研究中,我们利用OCpetro和生物源SOC (OCbio)在热化学稳定性方面的差异,使用阶梯式元素分析来量化OCpetro在总SOC (fpetro)中的分数贡献,并进行敏感性分析来估计OCpetro对模型SOC传递时间和系统年龄的影响。具体来说,我们比较了考虑OCpetro输入的土壤有机碳转换模型(使用SoilR)对白垩纪Mancos页岩下的两种山地草甸土壤的影响。在这些地点,我们估计OCpetro占总SOC储量的7%-9% (fpetro = 0.07-0.09)。然而,将OCpetro作为惰性碳和被动碳的混合物或完全惰性碳计算,对有机碳转运时间和体系年龄的影响可以忽略不计,这表明存在一个OCpetro含量阈值,在此阈值下,对计算的有机碳周转率的影响最小。根据我们的敏感性分析,我们估计该阈值为fpetro = 0.125,进一步支持OCpetro的准确计算仍然是估算有机碳周转率的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantifying the Effect of Petrogenic Carbon on SOC Turnover for Two Rocky Mountain Soils: When Are Petrogenic Carbon Corrections Required?

Quantifying the Effect of Petrogenic Carbon on SOC Turnover for Two Rocky Mountain Soils: When Are Petrogenic Carbon Corrections Required?

Petrogenic organic carbon (OCpetro), derived from sedimentary rocks, is an often overlooked and poorly quantified source of soil organic carbon (SOC), which may influence measured or modeled SOC composition, age, and stability. In this study, we exploited differences in thermochemical stability between OCpetro and biogenic SOC (OCbio) using stepped elemental analysis to quantify the fractional contribution of OCpetro to total SOC (fpetro), and we conducted a sensitivity analysis to estimate the effects of OCpetro on modeled SOC transit times and system ages. Specifically, we compared the effects of accounting for OCpetro inputs in SOC turnover modeling (using SoilR) for two montane meadow soils that are underlain by Cretaceous Mancos Shale. At these sites, we estimate that OCpetro comprises 7%–9% of the total SOC stock (fpetro = 0.07–0.09). However, accounting for OCpetro as a mixture of inert and passive C or as completely inert C had negligible effects on SOC transit times and system ages, suggesting that there is a threshold of OCpetro content under which there is minimal effect on calculated SOC turnover. Based on our sensitivity analysis, we estimate this threshold to be fpetro = 0.125, further supporting that the accurate calculation of OCpetro remains an important factor in estimating SOC turnover.

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来源期刊
Journal of Geophysical Research: Biogeosciences
Journal of Geophysical Research: Biogeosciences Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
5.40%
发文量
242
期刊介绍: JGR-Biogeosciences focuses on biogeosciences of the Earth system in the past, present, and future and the extension of this research to planetary studies. The emerging field of biogeosciences spans the intellectual interface between biology and the geosciences and attempts to understand the functions of the Earth system across multiple spatial and temporal scales. Studies in biogeosciences may use multiple lines of evidence drawn from diverse fields to gain a holistic understanding of terrestrial, freshwater, and marine ecosystems and extreme environments. Specific topics within the scope of the section include process-based theoretical, experimental, and field studies of biogeochemistry, biogeophysics, atmosphere-, land-, and ocean-ecosystem interactions, biomineralization, life in extreme environments, astrobiology, microbial processes, geomicrobiology, and evolutionary geobiology
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