Trace metal determination by chromatography

Trace metal determination by chromatography
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色谱法测定痕量金属

DOI:
10.1016/s0021-9673(00)80258-7
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发表时间:
1984
影响因子:
4.1
通讯作者:
G. Nickless
G. Nickless
中科院分区:
化学2区
文献类型:
--
作者:
G. Nickless

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评论家(第二代色谱)试图突出无机色谱的各种链和应用。这些应用现在的进展超出了元素分析的范围,正如该领域的发起人和先驱者所设想的那样,但我个人认为,第二和第三波色谱仪(在无机领域)没有先驱者的灵感和远见-我们被机器所吸引。分离的核心仍然是溶质、基质和溶剂之间难以捉摸的Trinity位一体的相互作用,这是目前一代色谱仪,特别是柱液领域的色谱仪已经实现并正在实现的。但是许多突破性的论文,例如物种形成,并不是来自“经典”方法,而是来自研究人员需要无机色谱来解决特定问题的其他领域。对评论家来说,这个领域是一个迷人的领域,一个仍然充满兴趣和阴谋的领域,这在很大程度上要归功于我们正在庆祝的这个人的生日,希望它能保持下去。在某些领域,无机色谱法已经失败了,但经过大约40年的发展,它仍然在进步--愿它的中年是一个富有成果和令人兴奋的中年。我满怀期待地展望下一个十年。
The reviewer (a second generation chromatographer) has attempted to highlight the various strands and applications of inorganic chromatography. These applications now progress beyond the bounds of elemental analysis as probably envisaged by the initiators and pioneers in the field, but personally I feel that the second and third waves of chromatographers (within the inorganic area) have not had the inspiration and foresight of the pioneers —we were seduced by machinery. The heart of the separation is still that elusive trinity of interaction between solute, substrate and solvent, it is something that the present generation of chromatographers particularly in the column liquid area has and is realising. But many of the breakthrough papers for example in speciation are coming not from “classical” approaches but from other fields where research workers need inorganic chromatography to solve a particular problem. To the reviewer the field is a fascinating one, one which is still full of interest and intrigue and that is due in no small measure to the man's birthday we are celebrating, long may it remain so. In some areas inorganic chromatography has failed but after some forty years it still progresses— may its middle-age be a fruitful and exciting one. I look forward to the next ten years with eager anticipation.