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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Study of the parameters in microwave dissolution methods using a magnetic stirring device in the microwave unit. Application to dissolution of high-carbon ferrochromium
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Study of the parameters in microwave dissolution methods using a magnetic stirring device in the microwave unit. Application to dissolution of high-carbon ferrochromium

机译:使用微波装置中的磁力搅拌装置研究微波溶解方法中的参数。在高碳铬铁溶解中的应用

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Microwave sample preparation methods have come a long may since the earliest experiments with domestic microwave ovens. This study concerned the decomposition of ferrochromium samples containing a high proportion of insoluble carbides by means of a focused microwave digestion system. The experimental results showed that samples were completely decomposed in HNO3-HF mixed acids, Optimization of the microwave dissolution programmes involved the study of acid mixture volume, the control of pressure and temperature inside a reference vessel, power control and the influence of magnetic stirring during the dissolution processes. Chromium was determined potentiometrically in each of the intermediate digests obtained during optimization of the procedure, for demonstration of the successive recoveries of this element. The selected dissolution procedure provided a recovery of 99-100% Cr under the following conditions: 5 min at 250 W/30 min at 400 W/15 min at 500 W (without stirring) and 5 min at 250 W/15 min at 400 W/5 min at 500 W (with stirring) and showed excellent reproducibility with a slightly improved RSD when magnetic stirring was used. The accuracy was determined using three high-carbon ferrochromium reference materials: ECRM 585-1 from the Bureau of Analysed Samples, BAM 530-1 from the Bundesanstalt fur Materialprufung and BCS 204-4 from British Chemical Standards. The results were compared with those obtained using a classical dissolution procedure. The microwave solutions could also be used for the simultaneous determination of major and minor elements in FeCr samples by spectroscopic techniques. [References: 12]
机译:自最早使用家用微波炉进行实验以来,微波样品制备方法已走了很长时间。这项研究涉及通过聚焦微波消解系统分解含有大量不溶碳化物的铬铁样品。实验结果表明,样品在HNO3-HF混合酸中完全分解,微波溶解程序的优化涉及酸混合物体积的研究,参考容器内部压力和温度的控制,功率控制以及电磁搅拌过程中的影响。溶解过程。在程序优化期间获得的每个中间消化物中,以电位滴定法测定铬,以证明该元素的连续回收率。在以下条件下,选定的溶解程序可回收99-100%的Cr:250 W / 30分钟,400 W / 30分钟,500 W(无搅拌)下5分钟和250 W / 15分钟,400 W下15分钟。在500 W下(搅拌下)W / 5分钟,并显示出优异的重现性,当使用磁力搅拌时,RSD略有改善。使用三种高碳铬铁参考材料确定了准确度:分析样品局的ECRM 585-1,Bundesanstalt Fur Materialprufung的BAM 530-1和英国化学标准的BCS 204-4。将结果与使用经典溶解程序获得的结果进行比较。微波溶液还可用于通过光谱技术同时测定FeCr样品中的主要和次要元素。 [参考:12]

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