首页> 外文OA文献 >Using Rock-Eval 6 pyrolysis for tracking fossil organic carbon in modern environments: implications for the roles of erosion and weathering.
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Using Rock-Eval 6 pyrolysis for tracking fossil organic carbon in modern environments: implications for the roles of erosion and weathering.

机译:使用Rock-Eval 6热解法跟踪现代环境中的化石有机碳:对侵蚀和风化作用的影响。

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摘要

This work relates to the debate on the fossil organic carbon (FOC) input in modern environments and its possible implication for the carbon cycle, and suggests the use of Rock-Eval 6 pyrolysis as a relevant tool for tracking FOC in such environments. Considering that such a delivery is mainly due to supergene processes affecting the continental surface, we studied organic matter in different reservoirs such as bedrocks, alterites, soils and rivers in two experimental catchments at Draix (Alpes de Haute Provence, France). Samples were subjected to geochemical (Rock-Eval 6 pyrolysis) investigations and artificial bacterial degradations. After comparing the geochemical fingerprint of samples, geochemical markers of FOC were defined and tracked in the different reservoirs. Our results confirm the contribution of FOC in modern soils and rivers and display the various influences of weathering and erosional processes on the fate of FOC during its exchange between these pools. In addition, the contrasting behaviour of these markers upon the supergene processes has also highlighted the refractory or labile characters of the fossil organic matter (FOM). Bedrock to river fluxes, controlled by gully erosion, are characterized by a qualitative and quantitative preservation of FOM. Bedrock to alterite fluxes, governed by chemical weathering, are characterized by FOC mineralization without qualitative changes in deeper alterites. Alterite to soils fluxes, controlled by (bio)chemical weathering, are characterized by strong FOC mineralization and qualitative changes of FOM. Thus weathering and erosional processes induce different FOM evolution and affect the fate of FOC towards the global carbon cycle. In this study, gully erosion would involve maintenance of an ancient sink for the global carbon cycle, while (bio)chemical processes provide a source of CO2. Finally, this study suggests that Rock-Eval 6 pyrolysis can be considered as a relevant tool for tracking FOC in modern environments.
机译:这项工作涉及对现代环境中化石有机碳(FOC)输入及其对碳循环的潜在影响的辩论,并建议使用Rock-Eval 6热解作为跟踪此类环境中FOC的相关工具。考虑到这种输送主要是由于超基因过程影响了大陆表层,我们研究了Draix(法国阿尔卑斯上普罗旺斯)两个实验集水区不同储层中的有机质,例如基岩,蚀变,土壤和河流。对样品进行地球化学(Rock-Eval 6热解)研究和人工细菌降解。在比较样品的地球化学指纹后,在不同的储层中定义并跟踪了FOC的地球化学标记。我们的结果证实了FOC在现代土壤和河流中的贡献,并显示了风化和侵蚀过程对这些池之间交换过程中FOC命运的各种影响。此外,这些标记物在超基因过程中的对比行为也突显了化石有机质(FOM)的耐火或不稳定特性。受沟壑侵蚀控制的基岩至河流通量的特征在于对FOM的定性和定量保存。受化学风化作用控制的基岩到蚀变通量的特征是FOC矿化作用,而较深的蚀变没有定性变化。受(生物)化学风化作用控制的土壤通量的替代特征是FOC强烈矿化和FOM的质变。因此,风化和侵蚀过程导致不同的FOM演变并影响FOC走向全球碳循环的命运。在这项研究中,沟壑侵蚀将涉及为全球碳循环维护一个古老的汇,而(生物)化学过程提供了二氧化碳的来源。最后,这项研究表明,Rock-Eval 6热解可以被视为在现代环境中跟踪FOC的相关工具。

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