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Visual Test of Subparts per Billion-Level Mercuric Ion with a Gold Nanoparticle Probe after Preconcentration by Hollow Fiber Supported Liquid Membrane

机译:中空纤维支撑的液膜预浓缩后,用金纳米粒子探针对十亿种汞离子的子部分进行目测

摘要

With the combination of the gold nanoparticle (AuNP)-based visual test with hollow fiber supported liquid membrane (HFSLM) extraction, a highly sensitive and selective method was developed for field detection of mercuric ion (Hg(2+)) in environmental waters. Hg(2+) in water samples was extracted through HFSLM and trapped in the aqueous acceptor and then visually detected based on the red-to-blue color change of 3-mercaptopropionic acid-functionalizecl AuNP (MPA-AuNP) probe. The highest extraction efficiency of Hg(2+) was obtained by using a 600 mL sample (pH 8.0, 2.0% (w/v) NaCl), similar to 35 mu L of acceptor (10 mM of 2,6-pyridinedicarboxylic acid, pH 4.0) filled in the lumen of a polypropylene hollow fiber tubing (55 cm in length, 50 mu m wall thickness, 280 mu m inner diameter), a liquid membrane of 2.0% (w/v) trioctycphosphine oxide in undecane, and a shaking rate of 250 rpm. The chromegenic reaction was conducted by incubating the mixture of MPA-AuNP stock solution (12 mu L, 15 nM), Tris-borate buffer solution (18 mu L, 0.2 M, pH 9.5), and acceptor (30 mu L) at 30 degrees C for 1 h. The detection limit can be adjusted to 0.8 mu g/L Hg(2+) (corresponding to an enrichment factor of similar to 1000 in the HFSLM) and 2.0 mu g/L Hg(2+) (the U.S. Environmental Protection Agency limit of [Hg(2+)] for drinkable water) by using extraction times of 3 and 1 h, respectively. The proposed method is extremely specific for Hg(2+) with tolerance to at least 1000-fold of other environmentally relevant heavy and transition metal ions and was successfully applied to detect Hg(2+) in a certified reference water sample, as well as real river, lake, and tap water samples.
机译:结合基于金纳米粒子(AuNP)的目测测试和中空纤维支持的液膜(HFSLM)提取,开发了一种高灵敏且选择性的方法,用于现场检测环境水中的汞离子(Hg(2+))。通过HFSLM提取水样品中的Hg(2+),并将其捕获在水性受体中,然后根据3-巯基丙酸官能化AuNP(MPA-AuNP)探针的红至蓝颜色进行肉眼检测。通过使用600 mL样品(pH 8.0,2.0%(w / v)NaCl)可获得Hg(2+)的最高提取效率,类似于35μL的受体(10 mM的2,6-吡啶二甲酸, pH值4.0)填充在聚丙烯中空纤维管的内腔中(长度55厘米,壁厚50微米,内径280微米),在十一烷中的2.0%(w / v)三辛基膦氧化物的液膜,以及摇动速度为250 rpm。发色反应通过在30℃下孵育MPA-AuNP储备液(12μL,15 nM),Tris-硼酸盐缓冲溶液(18μL,0.2 M,pH 9.5)和受体(30μL)的混合物来进行摄氏度1小时。检出限可以调整为0.8μg / L Hg(2 +)(对应于HFSLM中的富集因子接近1000)和2.0μg / L Hg(2 +)(美国环境保护局的限值为[Hg(2+)]用于饮用水)的提取时间分别为3小时和1小时。拟议的方法对Hg(2+)具有极高的特异性,对其他环境相关的重金属和过渡金属离子的耐受性至少为1000倍,并且已成功应用于检测认证参考水样中的Hg(2+)以及真实的河流,湖泊和自来水样本。

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    Tan Zhi-qiang; Liu Jing-fu;

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  • 年度 2010
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