Hall Naima L, Dvonch Joseph Timothy, Marsik Frank J, Barres James A, Landis Matthew S
Department of Environmental Health Sciences, School of Public Health, University of Michigan Air Quality Laboratory, Ann Arbor, MI 48109, USA.
U.S. Environmental Protection Agency Office of Research and Development, Research Triangle Park, NC 27709, USA.
Int J Environ Res Public Health. 2017 Feb 10;14(2):173. doi: 10.3390/ijerph14020173.
This paper describes the development of a new artificial turf surrogate surface (ATSS) sampler for use in the measurement of mercury (Hg) dry deposition. In contrast to many existing surrogate surface designs, the ATSS utilizes a three-dimensional deposition surface that may more closely mimic the physical structure of many natural surfaces than traditional flat surrogate surface designs (water, filter, greased Mylar film). The ATSS has been designed to overcome several complicating factors that can impact the integrity of samples with other direct measurement approaches by providing a passive system which can be deployed for both short and extended periods of time (days to weeks), and is not contaminated by precipitation and/or invalidated by strong winds. Performance characteristics including collocated precision, in-field procedural and laboratory blanks were evaluated. The results of these performance evaluations included a mean collocated precision of 9%, low blanks (0.8 ng), high extraction efficiency (97%-103%), and a quantitative matrix spike recovery (100%).
本文介绍了一种用于测量汞(Hg)干沉降的新型人造草皮替代表面(ATSS)采样器的研发情况。与许多现有的替代表面设计不同,ATSS采用三维沉积表面,与传统的平面替代表面设计(水、过滤器、涂油聚酯薄膜)相比,它可能更接近许多自然表面的物理结构。ATSS的设计旨在克服一些可能影响其他直接测量方法样品完整性的复杂因素,它提供了一个被动系统,可在短时间和长时间(数天至数周)内进行部署,且不受降水污染和/或强风影响而失效。评估了包括并置精度、现场操作和实验室空白等性能特征。这些性能评估的结果包括平均并置精度为9%、低空白(0.8纳克)、高提取效率(97%-103%)和定量基质加标回收率(100%)。