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首页> 外文期刊>Analytica chimica acta >Enhancing the microdialysis recovery for sampling of Cu and Ni by incorporating humic acid in the perfusion liquid
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Enhancing the microdialysis recovery for sampling of Cu and Ni by incorporating humic acid in the perfusion liquid

机译:通过在灌注液中掺入腐殖酸来提高微量铜和镍样品的微透析回收率

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摘要

A strategy to enhance the microdialysis relative recovery for sampling of Cu and Ni ions is presented.Enhanced recovery was achieved by incorporating humic acid,a binding agent,in the microdialysis perfusion liquid during sampling from a Cu and Ni standard solution mixture.All microdialysis sampling experiments were carried out at room temperature under quiescent conditions using a concentric type of microdialysis probe with an adjustable effective dialysis length.For all metal determinations electrothermal atomic absorption spectrometry was employed.Metal recoveries were shown to be dependent on the membrane molecular weight cut-off,perfusion rate,sample solution pH,perfusion liquid composition as well as perfusion liquid pH.Complete recoveries(100%)of Cu and Ni were obtained by microdialysis sampling using a 10 kDa molecular weight cut-off polysulfone membrane at a flow-rate of 2 mul/min employing a 0.05%(w/v)optimal composition of humic acid incorporated in the perfusion liquid.The optimal sampling pH of humic acid was determined to be 6 where most oxygen containing functional groups are dissociated and available for metal binding.These data have important ramifications for sampling and determination of metal ions in small sample solutions(approx10 ml)at very low concentrations in the ppb range.
机译:提出了一种提高铜和镍离子采样的微透析相对回收率的策略。在从铜和镍标准溶液混合物采样的微透析灌注液中加入腐殖酸,一种粘合剂,从而提高了回收率。使用可调节有效透析长度的同心型微渗析探针在室温下于静止条件下进行实验。对于所有金属测定,均采用电热原子吸收光谱法。 ,流速,样品溶液的pH,灌注液体的组成以及灌注液体的pH。使用10 kDa分子量截断的聚砜膜通过微透析进样,流速为100%,获得了铜和镍的完全回收率(100%)。 2 mul / min,使用灌注液中掺入的0.05%(w / v)最佳腐殖酸组成的。腐殖酸的最佳采样pH被确定为6,大多数含氧官能团被解离并可与金属结合,这些数据对于在极低浓度的小样品溶液(约10 ml)中对金属离子的采样和测定具有重要意义。 ppb范围。

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