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首页> 外文期刊>Journal of Archaeological Science >In search of the optimum Raman/IR signatures of potential ingredients used in San/Bushman rock art paint
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In search of the optimum Raman/IR signatures of potential ingredients used in San/Bushman rock art paint

机译:寻找圣/布什曼岩画涂料中潜在成分的最佳拉曼/红外特征

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Vibrational spectroscopy (Raman and FTIR) has played an important role in identifying pigments, substrata and deterioration products in rock art studies worldwide: in the laboratory and on-site. However, the detection of organic binders and carrying agents has so far been scarce and the quality of many spectra recorded on-site inadequate. In this study, possible pigments (charcoal, ochre, raptor faeces, thermally treated ostrich egg shell, etc.), binders (fat, egg, blood) and carrying agents (saliva, gall, egg, water) were selected based on artistic considerations and analysed with FTIR and Raman (514.6 and 785 nm excitation, both available in mobile instruments) spectroscopy in order to determine usable marker bands for each ingredient. The resultant marker bands were then used to analyse five ten year old San replica paints. It was found that FTIR spectroscopy is very efficient to identify organic compounds as there is no fluorescence but the broadness of the bands inhibits the exact assignment of many ingredients. A high fluorescence background experienced for many natural products prevented the recording of Raman spectra for all ingredients, in many instances though the sharp peaks usually associated with Raman spectra make identification easier than with FTIR spectroscopy. Most of the ingredients in the paints could be identified, but it is clear that better results are obtained when more that one technique is used.
机译:振动光谱法(拉曼光谱和FTIR)在鉴定全球范围内的岩画研究中的颜料,基质和劣化产物方面发挥了重要作用:在实验室和现场。然而,到目前为止,对有机粘合剂和载剂的检测还很匮乏,而且现场记录的许多光谱的质量也不充分。在这项研究中,根据艺术方面的考虑,选择了可能的色素(木炭,石,猛禽粪便,经过热处理的鸵鸟蛋壳等),粘合剂(脂肪,蛋,血液)和载剂(唾液,胆,蛋,水)然后用FTIR和拉曼光谱仪(514.6和785 nm激发,均可在移动仪器中获得)进行光谱分析,以确定每种成分的可用标记带。然后将所得的标记带用于分析五种十年历史的San复制品涂料。发现FTIR光谱法非常有效地鉴定有机化合物,因为没有荧光,但是谱带的宽度抑制了许多成分的精确分配。许多天然产物经历的高荧光背景阻止了所有成分的拉曼光谱记录,尽管在许多情况下,通常与拉曼光谱相关的尖峰使鉴定比与FTIR光谱更容易。可以确定涂料中的大多数成分,但是很明显,使用一种以上的技术可以获得更好的结果。

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