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用于气态汞被动采样器的纳米结构材料的特性和性能。

Characteristics and Performances of a Nanostructured Material for Passive Samplers of Gaseous Hg.

机构信息

Institute of Atmospheric Pollution Research-National Research Council, Research Area of Rome 1, Via Salaria km 23,600, Monterotondo, 00016 Rome, Italy.

Laboratory for Biomimetic Membranes and Textiles, Empa, Swiss Federal Laboratories for Materials Science and Technology, Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland.

出版信息

Sensors (Basel). 2020 Oct 23;20(21):6021. doi: 10.3390/s20216021.

Abstract

Passive air samplers (PASs) have been used for mapping gaseous mercury concentration in extensive areas. In this work, an easy-to-use and -prepare gold nanoparticle (NP)-based PAS has been investigated. The PAS is constituted of a microfibrous quartz disk filter impregnated of gold NP photo-growth on TiO NPs (Au@TiO) and used as gaseous mercury adsorbing material. The disk was housed in a cylinder glass container and subjected to an axial diffusive sampling. The adsorbed mercury was measured by thermal desorption using a Tekran instrument. Different amounts of Au@TiO (ranging between 4.0 and 4.0 × 10 mg) were deposited by drop-casting onto the fibrous substrate and assessed for about 1 year of deployment in outdoor environment with a mercury concentration mean of about 1.24 ± 0.32 ng/m in order to optimize the adsorbing layer. PASs showed a linear relation of the adsorbed mercury as a function of time with a rate of 18.5 ± 0.4 pg/day (≈1.5% of the gaseous concentration per day). However, only the PAS with 4 mg of Au@TiO, provided with a surface density of about 3.26 × 10 mg/mm and 50 μm thick inside the fibrous quartz, kept stability in working, with a constant sampling rate (SR) (0.0138 ± 0.0005 m/day) over an outdoor monitoring experimental campaign of about 1 year. On the other hand, higher sampling rates have been found when PASs were deployed for a few days, making these tools also effective for one-day monitoring. Furthermore, these PASs were used and re-used after each thermal desorption to confirm the chance to reuse such structured layers within their samplers, thus supporting the purpose to design inexpensive, compact and portable air pollutant sampling devices, ideal for assessing both personal and environmental exposures. During the whole deployment, PASs were aided by simultaneous Tekran measurements.

摘要

被动空气采样器 (PAS) 已被用于绘制大范围气态汞浓度图。在这项工作中,研究了一种易于使用和准备的基于金纳米粒子 (NP) 的 PAS。该 PAS 由微纤维石英圆盘过滤器组成,该过滤器浸渍有 TiO2 NPs 上的金 NP 光生长 (Au@TiO2),用作气态汞吸附材料。圆盘被放置在圆柱形玻璃容器中,并进行轴向扩散采样。吸附的汞通过热解吸使用 Tekran 仪器进行测量。通过滴铸将不同量的 Au@TiO2(范围在 4.0 至 4.0×10mg 之间)沉积到纤维基质上,并在户外环境中进行了约 1 年的部署,以评估最佳吸附层,该环境中的汞浓度平均值约为 1.24±0.32ng/m。PAS 显示出吸附汞与时间的线性关系,速率为 18.5±0.4pg/天(≈每天气态浓度的 1.5%)。然而,只有含有 4mg Au@TiO2 的 PAS 提供了约 3.26×10mg/mm 的表面密度和 50μm 的纤维石英内部厚度,才能在大约 1 年的户外监测实验中保持工作稳定性,具有恒定的采样速率 (SR)(0.0138±0.0005m/天)。另一方面,当 PAS 部署几天时,会发现更高的采样速率,这使得这些工具也可用于一天的监测。此外,在每次热解吸后,这些 PAS 都被重新使用,以确认在其采样器中重新使用这种结构化层的机会,从而支持设计廉价、紧凑和便携式空气污染物采样设备的目的,这些设备非常适合评估个人和环境暴露情况。在整个部署过程中,PAS 得到了同时进行的 Tekran 测量的帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32ca/7660345/83ad36130797/sensors-20-06021-g001.jpg

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