首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Properties of low power spark ablation in aqueous solution for dissolution of precious metals and alloys
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Properties of low power spark ablation in aqueous solution for dissolution of precious metals and alloys

机译:水溶液中低功率火花烧蚀的溶解贵金属和合金的特性

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Spark ablation or electric dispersion of metal samples in aqueous solution can be a useful approach for sample preparation.The ablated metal forms a stable suspension that has been described as colloidal,which is easily dissolved with a small amount of concentrated (16M) HNO_3.In this study,we have examined some of the properties of the spark ablation process for a variety of metals (Rh and Au) and alloys (stainless steel) using a low power spark (100-300 W).Particle size distributions and conductivity measurements were carried out on selected metals to characterize the stable suspensions.A LASER diffraction particle size analyzer was useful for showing that ablated particles varied in size from 1 to 30 mu m for both the silver and the nickel alloy,Inconel.In terms of weight percent most of the particles were between 10 and 30 mu m.Conductivity of the spark ablation solution was found to increase linearly for approximately 3min before leveling off at approximately 300S cm~3.These measurements suggest that a significant portion of the ablated metal is also ionic in nature.Scanning electron microscope measurements revealed that a low power spark is much less damaging to the metal surface than a high power spark.Crater formation of the low power spark was found in a wider area than expected with the highest concentration where the spark was directed.The feasibility of using spark ablation for metal dissolution of a valuable artifact such as gold was also performed.Determinations of Ag (4-12%) and Cu (1-3%) in Bullion Reference Material (BRM) gave results that were in very good agreement with the certified values.The precision was +-0.27% for Ag at 4.15% (RSD=6.5%) and +- 0.09% for Cu at 1% (RSD=9.0%).
机译:金属样品在水溶液中的火花烧蚀或电分散可能是用于样品制备的有用方法。烧蚀的金属形成稳定的悬浮液,该悬浮液被描述为胶体,很容易溶于少量的浓(16M)HNO_3。在这项研究中,我们研究了使用低功率火花(100-300 W)对多种金属(Rh和Au)和合金(不锈钢)进行火花烧蚀工艺的一些性能。颗粒尺寸分布和电导率测量分别为激光衍射粒度分析仪用于显示银和镍合金Inconel的烧蚀颗粒尺寸在1至30μm之间变化。颗粒的电导率在10到30μm之间。电火花烧蚀溶液的电导率持续约3min线性增加,然后在约300S cm〜3处趋于平稳。研究表明,烧蚀金属的很大一部分本质上也是离子性的。扫描电子显微镜测量表明,低功率火花比高功率火花对金属表面的损害要小得多。在最高浓度下将火花定向到比预期更大的区域。还进行了使用火花烧蚀对有价值的工件(如金)进行金属溶解的可行性测定银(4-12%)和铜(1-3金银参考材料(BRM)中的结果%与认证值非常吻合。对于4.15%的银,准确度为+ -0.27%(RSD = 6.5%),对于1%的铜,准确度为+-0.09% (RSD = 9.0%)。

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