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洛杉矶盆地粗颗粒物(PM(10 - 2.5))的氧化潜能及其与水溶性、微量元素和金属来源的关系。

Oxidative potential of coarse particulate matter (PM(10-2.5)) and its relation to water solubility and sources of trace elements and metals in the Los Angeles Basin.

作者信息

Shirmohammadi Farimah, Hasheminassab Sina, Wang Dongbin, Saffari Arian, Schauer James J, Shafer Martin M, Delfino Ralph J, Sioutas Constantinos

机构信息

University of Southern California, Department of Civil and Environmental Engineering, Los Angeles, CA, USA.

University of Wisconsin-Madison, Environmental Chemistry and Technology Program, Madison, WI, USA.

出版信息

Environ Sci Process Impacts. 2015 Dec;17(12):2110-21. doi: 10.1039/c5em00364d.

Abstract

In this study, potential sources of water-soluble (WS) and water-insoluble (WI) fractions of metals and trace elements in coarse particulate matter (CPM) (PM(10-2.5), 2.5 < dp < 10 μm) were identified and their association with the redox properties of CPM, measured by means of reactive oxygen species (ROS), was explored. CPM was collected during 2012-2013 in Central Los Angeles (LA) and 2013-2014 in Anaheim, CA. Generally, WI components contributed to a larger fraction of CPM ROS activity (as much as 64% and 54% at Central LA and Anaheim, respectively). Two major source factors were identified by principal component analysis for both the WS and WI fractions: vehicular abrasion and re-suspended road dust. Univariate analysis indicated that several species were correlated with CPM ROS activity: in WS fraction, metals such as Mn, Fe, Cd and Zn were associated with WS ROS, while in WI fraction Ti, Fe, Ni, Pb and Cr had the highest correlations with WI ROS activity. Multiple linear regression analysis revealed that both vehicular abrasion and re-suspension of road dust were associated with WS ROS activity, while only vehicular abrasion contributed significantly to the WI ROS activity. Moreover, comparison with previous studies indicated that the ROS activity of CPM has increased in the past 5 years in Central LA. We attribute this increase mainly to the elevated levels of re-suspension of road dust caused by the increase in vehicle speed and number of trucks in recent years in this area, reaffirming the growing importance of non-tailpipe traffic emissions on CPM toxicity.

摘要

在本研究中,确定了粗颗粒物(CPM)(PM(10 - 2.5),2.5 < dp < 10 μm)中金属和微量元素的水溶性(WS)和水不溶性(WI)部分的潜在来源,并探讨了它们与通过活性氧(ROS)测量的CPM氧化还原特性之间的关联。CPM于2012 - 2013年在洛杉矶市中心(LA)以及2013 - 2014年在加利福尼亚州阿纳海姆收集。一般来说,WI成分对CPM的ROS活性贡献更大(在洛杉矶市中心和阿纳海姆分别高达64%和54%)。通过主成分分析确定了WS和WI部分的两个主要来源因素:车辆磨损和道路扬尘再悬浮。单变量分析表明,几种元素与CPM的ROS活性相关:在WS部分,Mn、Fe、Cd和Zn等金属与WS ROS相关,而在WI部分,Ti、Fe、Ni、Pb和Cr与WI ROS活性的相关性最高。多元线性回归分析表明,车辆磨损和道路扬尘再悬浮均与WS ROS活性相关,而只有车辆磨损对WI ROS活性有显著贡献。此外,与先前研究的比较表明,在过去5年中,洛杉矶市中心CPM的ROS活性有所增加。我们将这种增加主要归因于近年来该地区车速和卡车数量增加导致的道路扬尘再悬浮水平升高,再次证实了非尾气交通排放对CPM毒性的重要性日益增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88b4/4666786/ac5e5c9fcf97/nihms737744f1.jpg

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