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Modeling Rehydration/Rehydroxylation Mass-Gain Curves from Davenport Ceramics

机译:从Davenport陶瓷建模补水/再羟化质量增益曲线

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摘要

Rehydroxylation ceramic dating, a new technique that has shown promise as an archeometric breakthrough, was applied to XIX-century samples of Davenport ceramics from Parowan, Utah in the United States. The samples were dried at 500℃ to remove both physically and chemically bonded water and then exposed to a 20% relative humidity air to record the progression of rehydration/rehydroxylation over a period of 40 d. Both time~(1/4) and time~(1) analyses were applied to the experimental mass gain versus time results in an attempt to find the most appropriate treatment for the data. The time1'4 analysis yielded poor reproducibility and nonideal fitting results to the Stage Ⅱ mass gain, in which water reacts with meta-clays. Application of the time1'" model, where "n" is the rehydroxylation exponent, improved the apparent linearity of Stage Ⅱ mass gain in small samples. However, the time~(1) treatment still provided a poor fit to data from larger specimens, indicating that some secondary effects related to sample size and water transport may exist. To examine the effects of porosity and macrostructure on rehydration/rehydroxylation processes, a pulverized sample of the same material was analyzed, resulting in improved sample-to-sample agreement in time~(1) irrespective of mass variations. These findings have implications on the application of rehydroxylation ceramic dating.
机译:重新羟基化陶瓷测年法是一项新的技术,已证明有望在考古学上取得突破,该技术已应用于十九世纪美国犹他州帕罗万市的达文波特陶瓷样品。将样品在500℃下干燥,以除去物理和化学键合的水,然后将其暴露于20%相对湿度的空气中,以记录40 d内复水/再羟基化的进程。将时间(1/4)和时间(1 / n)分析都应用到实验质量增益与时间的关系中,以试图找到最合适的数据处理方法。 time1'4分析的重现性较差,并且对阶段Ⅱ的质量增加没有理想的拟合结果,在该阶段中水与超粘土反应。应用time1'“模型,其中” n“是再羟基化指数,可以改善小样本中Ⅱ期质量增加的表观线性,但是,时间〜(1 / n)处理仍然不能很好地拟合来自大样本的数据样品,表明可能存在一些与样品量和水传输有关的次要影响,为检验孔隙率和宏观结构对复水/再羟基化过程的影响,分析了相同材料的粉碎样品,从而改善了样品间的一致性随质量变化而变化的时间约为(1 / n),这些发现对再羟基化陶瓷测年法的应用具有重要意义。

著录项

  • 来源
    《Journal of the American Ceramic Society》 |2013年第3期|885-891|共7页
  • 作者单位

    Department of Materials Science and Engineering, Michigan Technological University, Houghton, Michigan 49931;

    Department of Materials Science and Engineering, Michigan Technological University, Houghton, Michigan 49931;

    Department of Social Sciences, Michigan Technological University, Houghton, Michigan 49931;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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