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Cadmium analysis by radiochemical neutron activation analysis.

机译:镉分析通过放射化学中子活化分析。

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摘要

Radiochemical neutron activation analysis (RNAA) has been routinely used at the National Bureau of Standards to analyze Cd in a variety of environmentally important matrices. The method used to separate Cd from other neutron-activated products is solvent extraction. Zinc diethyldithiocarbamate [Zn(DDC)2] in chloroform will quantitatively extract Cd from an aqueous solution over a pH range from 1 to 12. In addition to the extraction of Cd, Zn(DDC)2 will also extract Cu, which can interfere with the Cd analysis by producing a high background level of radiation. This can be avoided by first extracting with Bi(DDC)3 in chloroform which removes Cu, but not Cd. Copper concentrations can, therefore, be determined in addition to Cd. This two extraction radiochemical separation procedure is very versatile and is often used as part of a larger multi-element analysis scheme. One such scheme involves the use of an inorganic-ion exchanger, Hydrated Manganese Dioxide (HMD), to retain As, Sb, Se, and Cr prior to extraction. The eluted fraction is then extracted with Bi(DDC)3 to remove Cu, and then with Zn(DDC)2 to remove Cd.
机译:国家标准局通常使用放射化学中子活化分析(RNAA)分析各种对环境重要的基质中的Cd。从其他中子活化产物中分离Cd的方法是溶剂萃取。氯仿中的二乙基二硫代氨基甲酸锌[Zn(DDC)2]将从pH范围为1至12的水溶液中定量萃取Cd。除了萃取Cd之外,Zn(DDC)2还将萃取铜,这可能会干扰通过产生高背景辐射水平的镉分析。可以通过先用Bi(DDC)3在氯仿中萃取除去Cu而不除去Cd来避免这种情况。因此,除Cd外,还可确定铜浓度。这两种萃取放射化学分离程序非常通用,通常用作较大的多元素分析方案的一部分。一种这样的方案涉及在萃取之前使用无机离子交换剂水合二氧化锰(HMD)保留As,Sb,Se和Cr。然后将洗脱的级分用Bi(DDC)3萃取以去除Cu,然后用Zn(DDC)2萃取Cd。

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