牙买加曼彻斯特教区晚中新世或上新世鸟粪凝块中有机物的生化特征。

Analytical Chemistry Insights Pub Date : 2013-06-18 Print Date: 2013-01-01 DOI:10.4137/ACI.S10380
Adrian Spence, Richard E Hanson, Toni Johnson, Claion Robinson, Richard N Annells
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引用次数: 4

摘要

有机质进入土壤的生物地球化学命运是一个必须研究的重要问题,以便更好地了解其在氮循环中的作用以及作为土壤-大气碳通量的天然调节剂。尽管有这些关键作用,但在估计这种反馈机制的贡献方面存在不确定性,部分原因是缺乏关于土壤中OM的来源和不稳定和难降解清单的分子水平信息。在这项研究中,我们使用了多分析方法来确定牙买加晚中新世或上新世时期鸟粪凝块中OM的发生和稳定的分子水平信息。我们确定了固结中存在的特定有机结构,以及化石有机质在现代环境下对OM池的可能贡献。我们的研究结果表明,可能具有高度聚亚甲基性质的脂肪族物种[(CH2)n]可能对稳定的土壤- c库有重要贡献。虽然不那么重要,但蛋白质和碳水化合物也在样品中富集,进一步表明化石有机质可能对当今土壤有机质中的碳氮库有贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biochemical characteristics of organic matter in a guano concretion of late miocene or pliocene age from manchester parish in Jamaica.

Biochemical characteristics of organic matter in a guano concretion of late miocene or pliocene age from manchester parish in Jamaica.

Biochemical characteristics of organic matter in a guano concretion of late miocene or pliocene age from manchester parish in Jamaica.

Biochemical characteristics of organic matter in a guano concretion of late miocene or pliocene age from manchester parish in Jamaica.

The biogeochemical fate of organic matter (OM) entering soils is an important issue that must be examined to better understand its roles in nitrogen cycling and as a natural modulator of soil-atmospheric carbon fluxes. Despite these critical roles, there are uncertainties in estimating the contribution of this feedback mechanism due in part to a lack of molecular-level information regarding the origin and labile and refractory inventories of OM in soils. In this study, we used a multi-analytical approach to determine molecular-level information for the occurrence and stabilization of OM in a bird guano concretion of the Late Miocene or Pliocene age in Jamaica. We determined the specific organic structures persisting in the concretion and the possible contribution of fossil organic matter to the OM pool in modern environments. Our results indicate that aliphatic species, presumably of a highly polymethylenic nature [(CH2)n], may significantly contribute to the stable soil-C pool. Although not as significant, proteins and carbohydrates were also enriched in the sample, further suggesting that fossil organic matter may contribute to carbon and nitrogen pools in present day soil organic matter.

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