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Determination and Characterization of Gold Nanoparticles in Liquor Using Asymmetric Flow Field-Flow Fractionation Hyphenated with Inductively Coupled Plasma Mass Spectrometry

机译:使用不对称流场-流分离法-电感耦合等离子体质谱法测定和表征液体中的金纳米颗粒

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摘要

The EU has approved the usage of gold as a food additive (E175) and it has been applied in numerous foods for coloring and decoration purposes. Different from the general assumption that edible gold is mainly present in the form of flakes or external coating in foods, this work demonstrated that gold nanoparticles (Au NPs) can be released from gold flakes and extracted under optimized conditions. To support future risk assessment associated with the exposure of Au NPs to human health, an effective approach was established in this study for both size characterization and mass determination of Au NPs released in a commercial gold-containing liquor using Asymmetric Flow Field-flow Fractionation (AF4) hyphenated with Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Our results showed that no Au NPs were detected in the original liquor product and only after ultrasonication for several minutes did Au NPs occur in the ultrasound-treated liquor. Particularly, Au NPs released in the liquor can be well extracted after 100-fold enrichment of gold flakes and the subsequent ultrasonication for 25 min. Size characterization of Au NPs was conducted by AF4-ICP-MS under calibration with Au NP standards. The gold particle sizes detected ranged from 8.3–398.0 nm and the dominant size of the released Au NPs was around 123.7 nm in the processed liquor. The mass concentration of gold particles determined in the liquor sample with gold flakes concentrated and subsequently sonicated was 48.1 μg L−1 by pre-channel calibration and the overall detection recoveries ranged over 82–95%. For the comparison control samples without ultrasonication, there was no detection of Au NPs. The established method was demonstrated to be useful for monitoring Au NPs in liquor and is possibly applied to other similar foodstuffs.
机译:欧盟已批准将金用作食品添加剂 (E175),并已应用于许多食品中,用于着色和装饰目的。与食用金主要以薄片或外部涂层形式存在于食品中的一般假设不同,这项工作证明了金纳米颗粒 (Au NPs) 可以从金片中释放出来并在优化条件下提取。为了支持未来与 Au NP 暴露于人类健康相关的风险评估,本研究建立了一种有效的方法,使用不对称流场流分馏 (AF4) 与电感耦合等离子体质谱 (ICP-MS) 联用,对商业含金液体中释放的 Au NPs 进行尺寸表征和质量测定。我们的结果表明,在原始白酒产品中没有检测到 Au NPs,只有在超声处理几分钟后,超声处理的白酒中才出现 Au NPs。特别是,在金片富集 100 倍并随后的超声处理 25 分钟后,可以很好地提取液体中释放的 Au NPs。在 Au NP 标准品校准下,通过 AF4-ICP-MS 对 Au NPs 进行尺寸表征。在加工液中检测到的金粒径范围为 8.3–398.0 nm,释放的 Au NPs 的主要粒径约为 123.7 nm。在浓缩金片并随后超声处理的液体样品中测定的金颗粒质量浓度为 48。1 μg L−1 的样本,总体检测回收率在 82–95% 以上。对于未进行超声处理的对照样品,未检测到 Au NPs。已建立的方法被证明可用于监测液体中的 Au NPs,并可能应用于其他类似的食品。

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