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Speciation Analysis of Silver Nanoparticles and Silver Ions in Antibacterial Products and Environmental Waters via Cloud Point Extraction-Based Separation

机译:基于浊点萃取的分离技术分析抗菌产品和环境水中的银纳米粒子和银离子的形态

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The rapid growth in commercial use of silver nanoparticles (AgNPs) will inevitably increase silver exposure in the environment and the general population. As the fate and toxic effects of AgNPs is related to the Ag~(+) released from AgNPs and the transformation of Ag~(+) into AgNPs, it is of great importance to develop methods for speciation analysis of AgNPs and Ag~(+). This study reports the use of Triton X-114-based cloud point extraction as an efficient separation approach for the speciation analysis of AgNPs and Ag~(+) in antibacterial products and environmental waters. AgNPs were quantified by determining the Ag content in the Triton X-114-rich phase with inductively coupled plasma mass spectrometry (ICPMS) after microwave digestion. The concentration of total Ag~(+), which consists of the AgNP adsorbed, the matrix associated, and the freely dissolved, was obtained by subtracting the AgNP content from the total silver content that was determined by ICPMS after digestion. The limits of quantification (S/N velence 10) for antibacterial products were 0.4 (mu)g/kg and 0.2 (mu)g/kg for AgNPs and total silver, respectively. The reliable quantification limit was 3 (mu)g/kg for total Ag~(+). The presence of Ag~(+) at concentrations up to 2-fold that of AgNPs caused no effects on the determination of AgNPs. In the cloud point extraction of AgNPs in antibacterial products, the spiked recoveries of AgNPs were in the range of 71.7-103percent while the extraction efficiencies of Ag~(+) were in the range of 1.2-10percent. The possible coextracted other silver containing nanoparticles in the cloud point extraction of AgNPs were distinguished by transmission electron microscopy (TEM), scanning electron microscopy (SEM)-energy dispersive spectroscopy (EDS), and UV-vis spectrum. Real sample analysis indicated that even though the manufacturers claimed nanosilver products, AgNPs were detected only in three of the six tested antibacterial products.
机译:银纳米颗粒(AgNPs)在商业用途中的快速增长将不可避免地增加环境和普通人群中的银暴露。由于AgNPs的命运和毒性作用与AgNPs释放的Ag〜(+)以及Ag〜(+)向AgNPs的转化有关,因此开发用于AgNPs和Ag〜(+)形态分析的方法具有重要意义。 )。这项研究报告了基于Triton X-114的浊点提取技术作为一种有效的分离方法,用于抗菌产品和环境水中的AgNPs和Ag〜(+)的形态分析。微波消解后,通过电感耦合等离子体质谱法(ICPMS)测定富含Triton X-114的Triton X-114相中的Ag含量,从而对AgNP进行定量。从总银含量中减去消解后的总银含量,即可得到总Ag〜(+)的浓度,该总浓度由吸附的AgNP,缔合的基质和自由溶解的成分组成。抗菌产品的定量限(信噪比10)为AgNPs和总银量分别为0.4μg/ kg和0.2μg/ kg。总Ag〜(+)的可靠定量限为3μg/ kg。 Ag〜(+)的存在浓度高达AgNPs的2倍,对AgNPs的测定没有影响。在抗菌产品中AgNPs的浊点萃取中,AgNPs的加标回收率在71.7-103%的范围内,而Ag〜(+)的萃取效率在1.2-10%的范围内。 AgNPs浊点萃取中可能共萃取的其他含银纳米粒子通过透射电子显微镜(TEM),扫描电子显微镜(SEM)-能量色散光谱(EDS)和UV-vis光谱进行了区分。实际样品分析表明,即使制造商声称具有纳米银产品,但仅在六种测试的抗菌产品中的三种中检测到了AgNP。

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