使用或不使用配位体估算电子和电气材料中金属成分的有毒六价铬(Cr6+)含量

G. Swarnabala, K. Suresh, B. Divya, A. Bharadwaj
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摘要

早在 1900 年,人们就开始使用溶解在有机溶剂中的二苯基卡巴肼(DPC)作为配位配体,对有毒的六价铬水溶液进行分析。由于形成的有机金属络合物不稳定,其化学性质并不明确,只是一个中间体。该络合物的结构至今仍无法确定或只是一种假设,但有进一步的分子结构建议,其中苯环的π键脱位预计会像夹层化合物一样,而六价铬的空 d 轨道电子则会促进电子转移,并使所获得的络合物呈现内场配位络合物的颜色。 电气和电子设备要求采用国际电工委员会 (IEC) 标准方法,用 DPC 估算含铬量高的固体基质中高达 ~0.2 %( ~2000 ppm)的六价铬。 然而,使用已知的 IEC 浸出方法,在六价铬被剥离或浸出到酸性水溶液中的情况下,可直接在紫外可见分光光度计上测量可见黄色。 其中给出的浸出程序排除了干扰离子的存在。因此,对这些含有六价铬的酸性水溶液的稳定性进行了 16 天的检测。这样就可以在没有 DPC 的情况下进行直接测量。 在使用和不使用 DPC 的情况下,对含有六价铬的螺钉、叉轴孔和捕鼠盒进行了分析和比较。结果表明,无需在紫外-可见分光光度计上添加 DPC 或任何其他有机配体,也无需使用离子色谱法(IC)等高端设备,即可轻松或简单地对这些材料进行令人满意的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of Toxic Hexavalent Chromium (Cr6+) in Metal Components Present in Electronic and Electrical Materials with or without using Coordinating Ligands
The aqueous solutions of toxic hexavalent chromium have been analyzed using diphenyl carbazide (DPC) dissolved in organic solvents as a coordinating ligand since early nineteen hundreds. The chemistry is not clear due to the formation of an unstable, suggested organometallic complex, which is only An intermediary. The structure of the same could not be determined or is hypothetical even today with a further suggested, molecular structure in which instead of pi bonded delocalization of benzene rings expected to be as in sandwich compounds, electron empty d-orbital of hexavalent chromium facilitating the electron transfer and giving the observed color of the obtained complex as in inner field coordinating complexes.  The electrical and electronic equipment requires the estimation of hexavalent chromium up to ~0.2 % (~2000 ppm) present in high chromium containing solid matrix, with DPC using standard International Electro-technical Commission (IEC) method. However, the visible yellow color can be directly measured on UV-Vis spectrophotometer with the hexavalent chromium stripped or leached out into acidic aqueous solutions from these materials using the known IEC method for leaching.  The presence of interfering ions is ruled out with the leaching procedure given in it. Therefore, the stability of these aqueous acidic solutions containing hexavalent chromium was checked for 16 days. So that direct measurement can be done without DPC. Screws, Fork Pivot Bore and Rat Trap Box containing hexavalent chromium were analyzed and compared with and without DPC. It is noted that the analysis of these materials can satisfactorily be achieved easily or simply without adding DPC on UV-Vis spectrophotometer or any other organic ligands or using high-end equipment such as Ion Chromatography (IC).
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