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Charcoal reflectance measurements: implications for structural characterization and assessment of diagenetic alteration

机译:木炭反射率测量:对结构表征和成岩作用评估的影响

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摘要

Charcoal is a valuable source of archaeological and palaeoenvironmental proxy data. However growing evidence suggests that production conditions can strongly influence post-depositional alteration of charcoal. Consequently, both reconstruction of production temperature and understanding of the potential for diagenetic alteration are of great interest. Here, we use mean random reflectance (Ro(mean)) in conjunction with other chemical characterization methods to address these questions. Ro(mean) was obtained for a suite of modern analogue charcoal, produced under controlled conditions, and for a series of natural charcoal samples, obtained from archaeological and palaeoenvironmental deposits. Ro(mean) proves to be a robust measure to assess formation temperature for samples produced at 400 degrees C and above, even after exposure to highly oxidizing conditions. Ro(mean) is also useful for samples formed between 300 degrees C and 400 degrees C. However, if an assemblage of charcoals has been exposed to oxidizing conditions, lower temperature charcoals may be preferentially lost. It is apparent that charcoal produced at lower temperatures is more highly susceptible to chemical oxidation, and that there is a continuum in charcoal degradation potential, dependant upon fuel material and production conditions.
机译:木炭是考古和古环境代理数据的宝贵来源。但是,越来越多的证据表明,生产条件会严重影响木炭的沉积后变化。因此,对生产温度的重建和对成岩作用改变的认识都引起了极大的兴趣。在这里,我们结合其他化学表征方法使用平均随机反射率(Ro(mean))来解决这些问题。 Ro(平均)是从一组在受控条件下生产的现代模拟木炭以及一系列从考古和古环境沉积物中获得的天然木炭样品获得的。 Ro(均值)被证明是评估在400摄氏度及以上生产的样品的形成温度的可靠方法,即使在暴露于高氧化条件下也是如此。 Ro(平均值)也可用于在300摄氏度和400摄氏度之间形成的样品。但是,如果将一组木炭暴露在氧化条件下,则低温木炭可能会优先丢失。显然,在较低温度下生产的木炭更容易受到化学氧化的影响,并且取决于燃料材料和生产条件,木炭的降解潜力存在连续性。

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