Zefon International, Inc., 5350 SW 1st Lane, Ocala, FL 34474, USA.
Department of Environmental Engineering Sciences, University of Florida, Black Hall, Gainesville, FL 32603, USA.
Int J Environ Res Public Health. 2020 Sep 18;17(18):6820. doi: 10.3390/ijerph17186820.
Exposure science is underpinned by characterization (measurement) of exposures. In this article, six recent advances in exposure characterization by sampling and analysis are reviewed as tools in the occupational exposure assessment of aerosols. Three advances discussed in detail are (1) recognition and inclusion of sampler wall deposits; (2) development of a new sampling and analytical procedure for respirable crystalline silica that allows non-destructive field analysis at the end of the sampling period; and (3) development of a new sampler to collect the portion of sub-300 nm aerodynamic diameter particles that would deposit in human airways. Three additional developments are described briefly: (4) a size-selective aerosol sampler that allows the collection of multiple physiologically-relevant size fractions; (5) a miniaturized pump and versatile sampling head to meet multiple size-selective sampling criteria; and (6) a novel method of sampling bioaerosols including viruses while maintaining viability. These recent developments are placed in the context of the historical evolution in sampling and analytical developments from 1900 to the present day. While these are not the only advances in exposure characterization, or exposure assessment techniques, they provide an illustration of how technological advances are adding more tools to our toolkit. The review concludes with a number of recommended areas for future research, including expansion of real-time and end-of-shift on-site measurement, development of samplers that operate at higher flow-rates to ensure measurement at lowered limit values, and development of procedures that accurately distinguish aerosol and vapor phases of semi-volatile substances.
暴露科学的基础是暴露的特征化(测量)。本文综述了六种最近在气溶胶职业暴露评估中通过采样和分析进行暴露特征化的进展,作为工具。详细讨论了三个进展:(1)认识到并包含采样器壁沉积物;(2)开发了一种新的可呼吸结晶二氧化硅采样和分析程序,允许在采样期结束时进行非破坏性现场分析;(3)开发了一种新的采样器,用于收集在人体气道中沉积的亚 300nm 空气动力学直径颗粒的部分。简要描述了另外三个进展:(4)一种尺寸选择性气溶胶采样器,允许收集多个生理相关的尺寸分数;(5)一种小型化的泵和多功能采样头,以满足多种尺寸选择性采样标准;(6)一种采样生物气溶胶(包括病毒)同时保持存活能力的新方法。这些最新进展是在从 1900 年至今采样和分析发展的历史演变背景下进行的。虽然这些不是暴露特征化或暴露评估技术的唯一进展,但它们说明了技术进步如何为我们的工具包增加了更多的工具。本文最后提出了未来研究的一些建议领域,包括扩大实时和轮班结束现场测量、开发在更高流速下运行的采样器以确保在降低的极限值下进行测量,以及开发准确区分半挥发性物质气溶胶和蒸气相的程序。