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APCD/DIBK萃取系统在强酸性介质中的应用:萃取-火焰原子吸收光谱法测定钛金属中痕量铜和镍

Application of APCD/DIBK extraction system in strongly acidic media: Determination of traces of copper and nickel in titanium metals by extraction-flame atomic-absorption spectrometry.

作者信息

Murakami M, Takada T

机构信息

Department of Chemistry, College of Science, Rikkyo (St. Paul's) University, Nishi-Ikebukuro, Toshima-ku, Tokyo 171, Japan.

出版信息

Talanta. 1992 Oct;39(10):1293-8. doi: 10.1016/0039-9140(92)80240-e.

Abstract

Extraction of nickel in strongly acidic solution (0.01 approximately 8M hydrochloric acid) with ammonium 1-pyrrolidinecarbodithioate (APCD) into di-isobutyl ketone (DIBK) has been studied, and the APCD/DIBK system has been applied to simultaneous extraction and flame atomic-absorption spectrometric determination of trace amounts of copper and nickel in titanium metal. Nickel could be extracted with copper from strongly acidic solution such as up to 5M hydrochloric acid with APCD/DIBK system. The extraction from such a strongly acidic media made it possible to extract nickel with copper, since it did not require the addition of a large amount of the masking agent which prevents the hydrolysis of the matrix titanium and also prevents the extraction of nickel. Thus, they could be extracted directly from the titanium metal sample digested by concentrated hydrochloric acid with a small amount of tetrafluorohydroboric acid. Effect of coexistence of a large amount (at least 0.2 g) of iron on the extraction of both elements could be prevented by keeping most of the matrix titanium as Ti(III). With the method described here, mug/g levels of copper and nickel in titanium metal could be rapidly determined with good precision and accuracy.

摘要

研究了在强酸性溶液(0.01至约8M盐酸)中,用1-吡咯烷二硫代氨基甲酸铵(APCD)将镍萃取到二异丁基酮(DIBK)中的情况,并将APCD/DIBK体系应用于同时萃取和火焰原子吸收光谱法测定钛金属中痕量的铜和镍。在APCD/DIBK体系中,镍可与铜一起从强酸性溶液(如高达5M盐酸)中萃取出来。从这种强酸性介质中萃取使得镍能够与铜一起被萃取,因为它不需要添加大量的掩蔽剂来防止基体钛水解以及防止镍的萃取。因此,它们可以直接从用少量四氟硼酸消化的浓盐酸处理过的钛金属样品中萃取出来。通过将大部分基体钛保持为Ti(III),可以防止大量(至少0.2g)铁的共存对两种元素萃取的影响。采用此处所述方法,可以快速、高精度且准确地测定钛金属中微克/克级的铜和镍。

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