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Alkali extraction of archaeological and geological charcoal: evidence for diagenetic degradation and formation of humic acids

机译:考古和地质炭的碱提取:成岩作用降解和腐殖酸形成的证据

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摘要

Charcoal forms a crucial source of archaeological and palaeoenvironmental data, providing a record of cultural activities, past climatic conditions and a means of chronological control via radiocarbon (C-14) dating. Key to this is the perceived resistance of charcoal to post-depositional alteration, however recent research has highlighted the possibility for alteration and degradation of charcoal in the environment. An important aspect of such diagenesis is the potential for addition of exogenous "humic acids' (HAs), to affect the accuracy of archaeological and palaeoenvironmental reconstructions based upon chemical analyses of HA-containing charcoal. However the release of significant quantities of HA from apparently pristine charcoals raises the question whether some HA could be derived via diagenetic alteration of charcoal itself. Here we address this question through comparison of freshly produced charcoal with samples from archaeological and geological sites exposed to environmental conditions for millennia using elemental (C/H/O) and isotopic (delta C-13) measurements, Fourier Transform Infrared Spectroscopy (FTIR) and proton Liquid-State Nuclear Magnetic Resonance (H-1 NMR). The results of analyses show that the presence of highly carboxylated and aromatic alkali-extractable HA in charcoal from depositional environments can often be attributable to the effects of post-depositional processes, and that these substances can represent the products of post-depositional diagenetic alteration in charcoal.
机译:木炭是考古和古环境数据的重要来源,可提供文化活动,过去气候条件的记录,并通过放射性碳(C-14)年代学来控制年代。关键在于感知到的木炭对沉积后变化的抵抗力,但是最近的研究强调了环境中木炭变化和降解的可能性。这种成岩作用的一个重要方面是可能添加外源“腐殖酸”(HAs),以影响对含HA的木炭的化学分析,从而影响考古和古环境重建的准确性。原始木炭提出了一个问题,即是否有可能通过木炭本身的成岩作用改变而衍生出某些HA。在这里,我们通过将新鲜生产的木炭与暴露于环境条件下几千年的考古和地质地点的样品(使用元素(C / H / O) )和同位素(δC-13)测量,傅立叶变换红外光谱(FTIR)和质子液态核磁共振(H-1 NMR)分析结果表明,存在高度羧化和芳香族碱可萃取的HA沉积环境中木炭中的碳含量通常可归因于沉积后过程的影响,并且这些物质可以代表木炭沉积后成岩作用的产物。

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