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利用铅同位素解析美国山间西部近地面臭氧的来源。

Unraveling the sources of ground level ozone in the Intermountain Western United States using Pb isotopes.

机构信息

Lawrence Berkeley National Laboratory, Berkeley, CA, United States.

University of California at Santa Cruz, Santa Cruz, CA, United States.

出版信息

Sci Total Environ. 2015 Oct 15;530-531:519-525. doi: 10.1016/j.scitotenv.2015.04.054. Epub 2015 Apr 29.

DOI:10.1016/j.scitotenv.2015.04.054
PMID:25934382
Abstract

Ozone as an atmospheric pollutant is largely produced by anthropogenic precursors and can significantly impact human and ecosystem health, and climate. The U.S. Environmental Protection Agency has recently proposed lowering the ozone standard from 75 ppbv (MDA8 = Maximum Daily 8-Hour Average) to between 65 and 70 ppbv. This will result in remote areas of the Intermountain West that includes many U.S. National Parks being out of compliance, despite a lack of significant local sources. We used Pb isotope fingerprinting and back-trajectory analysis to distinguish sources of imported ozone to Great Basin National Park in eastern Nevada. During discrete Chinese Pb events (> 1.1 ng/m(3) & > 80% Asian Pb) trans-Pacific transported ozone was 5 ± 5.5 ppbv above 19 year averages for those dates. In contrast, concentrations during regional transport from the Los Angeles and Las Vegas areas were 15 ± 2 ppbv above the long-term averages, and those characterized by high-altitude transport 3 days prior to sampling were 19 ± 4ppbv above. However, over the study period the contribution of trans-Pacific transported ozone increased at a rate of 0.8 ± 0.3 ppbv/year, suggesting that Asian inputs will exceed regional and high altitude sources by 2015-2020. All of these sources will impact regulatory compliance with a new ozone standard, given increasing global background.

摘要

作为一种大气污染物,臭氧主要由人为前体物产生,会对人类和生态系统健康以及气候造成重大影响。美国环境保护署最近提议将臭氧标准从 75ppbv(MDA8=最大日 8 小时平均浓度)降低到 65 到 70ppbv 之间。这将导致包括许多美国国家公园在内的山间西部偏远地区无法达标,尽管这些地区缺乏明显的本地来源。我们使用铅同位素指纹图谱和后向轨迹分析来区分输入到大盆地国家公园(内华达州东部)的臭氧的来源。在离散的中国铅事件(>1.1ng/m(3)和>80%亚洲铅)期间,跨太平洋输送的臭氧比这些日期的 19 年平均值高出 5±5.5ppbv。相比之下,来自洛杉矶和拉斯维加斯地区的区域输送期间的浓度比长期平均值高出 15±2ppbv,而在采样前 3 天由高空输送的浓度则高出 19±4ppbv。然而,在研究期间,跨太平洋输送的臭氧以 0.8±0.3ppbv/年的速度增加,表明到 2015-2020 年,亚洲的输入将超过区域和高空来源。鉴于全球背景的增加,所有这些来源都将影响到新臭氧标准的监管合规。

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