Variation in metal concentration across tree organs and stands: implications for reference specimen development

G. O’Sullivan, Kevin Hayes, Alex Ursino, E. Hart
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Abstract

Air pollution is a major environmental and public health issue in urban areas. Biomonitoring using trees has been widely used to determine atmospheric pollution due to its advantages of low cost, high spatial distribution, and accumulation of a wide range of air contaminants. However, challenges exist in applying the data obtained from biomonitoring trees, including differences in pollutant concentrations in samples of the same species from different locations, and the influence of biological and environmental parameters on metal accumulation. This study aims to inform the design of biomonitoring sampling for urban air quality studies and increase their applications to exposure assessment. Specifically, the study evaluates the variation in metal concentration in tree organs of two regionally relevant tree species (Picea pungens and Populus Alba), explores the implications of different aspects of field sampling, such as variation within tree stands, tree age, and develops a reference specimen to establish threshold values for differentiating between background levels and increased exposure. The results provide insight into the complexity of using biomonitoring trees for exposure assessment and the importance of considering multiple factors in study design.
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金属浓度在树木器官和林分上的变化:对参考标本发育的影响
空气污染是城市地区的一个主要环境和公共卫生问题。利用树木进行生物监测具有成本低、空间分布大、污染物积累范围广等优点,已被广泛应用于大气污染监测。然而,在应用从生物监测树获得的数据方面存在挑战,包括来自不同地点的同一物种样本中污染物浓度的差异,以及生物和环境参数对金属积累的影响。本研究旨在为城市空气质量研究的生物监测采样设计提供信息,并增加其在暴露评估中的应用。具体而言,该研究评估了两种区域相关树种(云杉和白杨)树木器官中金属浓度的变化,探讨了野外采样的不同方面的含义,如树木林分、树木年龄的变化,并开发了一个参考标本,以建立区分背景水平和增加暴露的阈值。研究结果揭示了使用生物监测树进行暴露评估的复杂性,以及在研究设计中考虑多种因素的重要性。
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