首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Identification of organic materials in historical stringed instruments by off-line analytical pyrolysis solid-phase microextraction with on-fiber silylation and gas chromatography-mass spectrometry
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Identification of organic materials in historical stringed instruments by off-line analytical pyrolysis solid-phase microextraction with on-fiber silylation and gas chromatography-mass spectrometry

机译:离线分析热解固相微萃取-光纤硅烷化-气相色谱-质谱法鉴定历史弦乐器中的有机物

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Historical stringed musical instruments are a unique class of cultural heritage objects. Crafted during the 16th-18th centuries, these instruments remain somewhat mysterious. Due to the absence of written historical documents of traditional varnish recipes, their chemical characterization is the only way to recover the lost 'secret' of the Cremonese stringed instrument maker Antonio Stradivari and his contemporaries, whose traditions had been lost by 1800. Pyrolysis combined with gas chromatography-mass spectrometry (GC-MS) using solid-phase microextraction (SPME) followed by on-fiber silylation (Py SPME Syl GC-MS) was applied to a large collection of standards to evaluate its validity for compositional analysis and material identification of historical stringed instrument varnishes. The standards included pure resins (colophony, amber, mastic, sandarac, elemi), different types of shellac, as well as colorants or additives such as madder, dragon's blood, and Aloe vera powder, and other materials (propolis, beeswax). The aim was to obtain an extensive collection of GC-MS data of silylated pyrolysis products useful for the characterization of the finishes of these unique historical objects. A set of distinct pyrolysis patterns and products were chosen as specific molecular markers for each standard. The method was applied to instrument varnish samples from Stainer, Baioni, Amati, Guarneri, Gasparo da Salo, Maggini, and Guadagnini instruments. The method was shown to be effective for the identification of oxidized lignin, drying oils, and diterpenic resins. In the case of dragon's blood, madder, shellac, and propolis new markers were identified, suggesting their presence in some instrument varnishes. The identification of proteins and madder appeared most challenging.
机译:历史弦乐器是文化遗产的独特类别。这些乐器在16至18世纪制造,仍然有些神秘。由于缺乏传统清漆配方的书面历史文献,其化学特性是挽回克雷蒙语弦乐器制造商安东尼奥·斯特拉迪瓦里和他的同时代人的“秘密”的唯一途径,安东尼奥·斯特拉迪瓦里和他的同时代人在1800年就失去了传统。固相微萃取(SPME)进行气相甲硅烷基化(Py SPME Syl GC-MS)的气相色谱-质谱(GC-MS)已应用于大量标准品,以评估其在成分分析和材料鉴定中的有效性弦乐器清漆的种类。这些标准包括纯树脂(树脂,琥珀,乳香,沙达拉克,elemi),不同类型的虫胶,着色剂或添加剂(如茜草,龙血和芦荟粉)以及其他材料(蜂胶,蜂蜡)。目的是获得大量硅烷化热解产物的GC-MS数据,这些数据可用于表征这些独特的历史物体的光洁度。选择了一套不同的热解模式和产物作为每种标准品的特定分子标记。该方法应用于Stainer,Baioni,Amati,Guarneri,Gasparo da Salo,Maggini和Guadagnini仪器的仪器清漆样品。结果表明该方法可有效鉴定氧化的木质素,干性油和二萜树脂。以龙血,芥末,虫胶和蜂胶为例,发现了新的标记,表明它们存在于某些仪器清漆中。蛋白质和野菜的鉴定似乎最具挑战性。

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