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Quantification of ultra-trace organolead species in environmental water by inductively coupled plasma mass spectrometry with online solid-phase extraction and high performance liquid chromatographic separation

机译:通过在线固相萃取和高效液相色谱分离,通过电感耦合等离子体质谱法定量环境水中的超痕量细胞内物质

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Quantification of organolead compounds in environmental water is an essential task considering much higher toxicity and bioavailability of organolead species than inorganic plumbic ions. However, the speciation of ultra-trace organolead compounds at sub ng L-1 levels is challengeable for current instruments incorporating high performance liquid chromatography with inductively coupled plasma mass spectrometry (HPLC-ICP-MS) and even offline enrichment that offer detection limits around several to tens of ng L-1. In this paper, an online solid-phase extraction (SPE) coupled HPLC-ICP-MS method was developed for speciation analysis of trace lead in water. Graphene oxide bounded silica particles (GO@SiO2) was utilized as the SPE adsorbent because of its superior performance over graphene bounded silica particles and commercial C18 packing particles. High enrichment factors (1603 for TML and 1376 for TEL) were obtained when lead species in 10 mL sample was adsorbed by 1 mM sodium dodecyl benzene sulfonate (SDBS) preconditioned GO@SiO2 at 10 mL min(-1) and then eluted by 5 mu L of 5 mM SDBS. Because of the highly efficient preconcentration, detection limits were downscaled to be 0.018 for TML and 0.023 ng L-1 for TEL with relative standard deviations below 5%. Additionally, the proposed method also yielded rapid separation of Pb(II), TML and TEL (8 min) by using green mobile phases (aqueous solutions of 5 mM sodium 1-pentanesulfonate at pH 2.5 with/without 4 mM tetrabutylammounium hydroxide). Upon successful application to fresh water, TML and TEL were only presented in the river water whereas Pb(II) was only existed in the tap water, along with accuracy validation by good spiked recoveries (93-106%). (C) 2020 Elsevier B.V. All rights reserved.
机译:在环境水中的量化细胞化合物的定量是考虑细胞内物种的毒性和生物利用度而不是无机铅离子的基本任务。然而,在亚NG L-1水平下的超痕量细胞内化合物的形态是对具有电感耦合等离子体质谱(HPLC-ICP-MS)的高性能液相色谱的电流仪器且甚至离线富集的电流仪器且提供了若干的仪器到几十个ng l-1。本文开发了一种在线固相提取(SPE)耦合HPLC-ICP-MS方法,用于水中痕量铅的样品分析。石墨烯氧化界二氧化硅颗粒(GO @ SiO 2)用作SPE吸附剂,因为其在石墨烯有界二氧化硅颗粒和商业C18包装颗粒上的优异性能。当10ml样品中的铅种吸附1mM十二烷基苯磺酸盐(SDB)预处理@ SiO 2时,获得高浓缩因子(1603次TML和1376的TEL),以10mL min(-1),然后用5洗脱mu l为5 mm sdbs。由于高效的前浓度,检测限为0.018,对于TML为0.023ng L-1,用于相对标准偏差低于5%。另外,该方法还通过使用绿色移动相(在pH 2.5在pH 2.5在pH 2.5的5mM钠1-戊酸钠水溶液的水溶液中,产生快速分离Pb(II),TML和TEL(8分钟)。在成功应用到淡水中,TML和TEL仅在河水中呈现,而PB(II)仅在自来水中存在,以及通过良好的尖刺回收率(93-106%)的准确性验证。 (c)2020 Elsevier B.V.保留所有权利。

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