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基于纳米复合涂层的微流控光催化剂辅助还原装置与高效液相色谱-电感耦合等离子体质谱联用在线测定天然水中无机砷形态

Nanocomposite-Coated Microfluidic-Based Photocatalyst-Assisted Reduction Device To Couple High-Performance Liquid Chromatography and Inductively Coupled Plasma-Mass Spectrometry for Online Determination of Inorganic Arsenic Species in Natural Water.

机构信息

Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University , Hsinchu 30013, Taiwan.

出版信息

Anal Chem. 2017 Jun 6;89(11):5891-5899. doi: 10.1021/acs.analchem.7b00247. Epub 2017 May 12.

Abstract

To selectively and sensitively determine the trace inorganic As species, As(III) and As(V), we developed a nanocomposite-coated microfluidic-based photocatalyst-assisted reduction device (PCARD) as a vapor generation (VG) device to couple high-performance liquid chromatography (HPLC) separation and inductively coupled plasma-mass spectrometry (ICPMS) detection. Au nanoparticles were deposited on TiO nanoparticles to strengthen the conversion efficiency of the nanocomposite photocatalytic reduction. The sensitivity for As was significantly enhanced by employing the nanocomposite photocatalyst and using prereduction and signal-enhancement reagents. Under the optimal operating conditions, the analytical detection limits (based on 3σ) of the proposed online HPLC/nanocomposite-coated microfluidic-based PCARD/ICPMS system for As(III) and As(V) were 0.23 and 0.34 μg·L, respectively. The results were validated using a certified reference material (NIST SRM 1643e) and groundwater sample analysis, indicating the good reliability and applicability of our proposed system for the determination of inorganic As species in natural fresh water.

摘要

为了选择性和灵敏地测定痕量无机砷形态,如砷(III)和砷(V),我们开发了一种基于纳米复合材料涂层的微流控光催化剂辅助还原装置(PCARD)作为蒸气发生(VG)装置,将高效液相色谱(HPLC)分离和电感耦合等离子体质谱(ICPMS)检测相结合。Au 纳米粒子沉积在 TiO2 纳米粒子上,以增强纳米复合材料光催化还原的转化效率。通过采用纳米复合材料光催化剂和使用预还原和信号增强试剂,显著提高了砷的灵敏度。在最佳操作条件下,所提出的在线 HPLC/纳米复合材料涂层微流控 PCARD/ICPMS 系统对 As(III)和 As(V)的分析检测限(基于 3σ)分别为 0.23 和 0.34 μg·L。使用认证参考物质(NIST SRM 1643e)和地下水样品分析对结果进行了验证,表明我们提出的系统在测定天然淡水中无机砷形态方面具有良好的可靠性和适用性。

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