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Cloud Point Extraction as an Advantageous Preconcentration Approach for Analysis of Trace Silver Nanoparticles in Environmental Waters

机译:浊点萃取作为一种有利的富集方法,用于分析环境水中的痕量银纳米颗粒

摘要

Silver nanoparticles (AgNPs) were selectively concentrated from environmental water samples without disturbing their sizes and shapes by cloud point extraction (CPE) with Triton X-114 (TX-114). ne highest extraction efficiency for AgNPs was obtained at about their zero point charge pH (pH(PZC)), which was similar to 3.0-3.5 for the studied AgNPs. Addition of salts such as 35 mM NaNO(3) or 10 mM Na(2)S(2)O(3) enhanced the phase separation and thus increased the extraction efficiency of AgNPs. Furthermore, Na(2)S(2)O(3) efficiently eliminated the interference of Ag(+) due to the formation of a complex between Ag(+) and S(2)O(3)(2-) that was not extracted into the TX-114-rich phase. The presence of humic acid at an environmentally relevant level (0-30 mg/L dissolved organic carbon) had no effect on die extraction of AgNPs. An enrichment factor of 100 was obtained with 0.2% (w/v) TX-114, and the recoveries of AgNPs from various environmental samples were in the range of 57-116% at 0.1-146 mu g/L spiked levels. The AgNPs preconcentrated into the TX-114-rich phase were identified by transmission electron microscopy/scanning electron microscopy-energy dispersive spectrometer/UV-vis spectrum and quantified after microwave digestion by inductively coupled plasma mass spectrometry with a detection limit of 0.006 mu g/L (34.3 fmol/L particles of AgNPs). As the proposed CPE procedure preserves the sizes and shapes of AgNPs, the original morphology of AgNPs in environmental waters can be obtained by characterizing the preconcentrated analytes in the TX-114-rich phase. This proposed method provides an efficient approach for the analysis and tracking of AgNPs in the environment.
机译:通过使用Triton X-114(TX-114)进行浊点萃取(CPE),从环境水样品中选择性浓缩银纳米颗粒(AgNPs),而不会干扰其大小和形状。在大约零电荷的pH(pH(PZC))处获得最高的AgNP提取效率,这与研究的AgNP的3.0-3.5相似。添加盐如35 mM NaNO(3)或10 mM Na(2)S(2)O(3)增强了相分离,因此提高了AgNPs的提取效率。此外,Na(2)S(2)O(3)有效消除了Ag(+)的干扰,这是由于在Ag(+)和S(2)O(3)(2-)之间形成了络合物。没有提取到TX-114丰富阶段。腐殖酸的存在与环境相关(0-30 mg / L溶解的有机碳)对AgNPs的提取没有影响。用0.2%(w / v)TX-114获得的富集因子为100,在0.1-146μg / L加标水平下,各种环境样品中AgNP的回收率在57-116%的范围内。通过透射电子显微镜/扫描电子显微镜-能量分散光谱仪/ UV-vis光谱鉴定富集到TX-114相中的AgNPs,并在微波消解后通过电感耦合等离子体质谱法进行定量,检测限为0.006μg / L(34.3 fmol / L的AgNPs颗粒)。由于拟议的CPE程序保留了AgNP的大小和形状,因此可以通过表征富含TX-114的相中的预浓缩分析物来获得环境水中AgNP的原始形态。该方法为环境中AgNP的分析和跟踪提供了一种有效的方法。

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