GSTDTAP  > 气候变化
DOI10.1002/2017JD026788
Quantifying the Impact of Biomass Burning Emissions on Major Inorganic Aerosols and Their Precursors in the US
Souri, Amir H.1; Choi, Yunsoo1; Jeon, Wonbae1,2; Kochanski, Adam K.3; Diao, Lijun1; Mandel, Jan4; Bhave, Prakash V.5; Pan, Shuai1
2017-11-16
发表期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
EISSN2169-8996
出版年2017
卷号122期号:21
文章类型Article
语种英语
国家USA; South Korea; Nepal
英文摘要

The primary sources for inorganic aerosols from biomass burning are rather negligible, but they are predominantly formed chemically following emission of their precursors (e.g., SO2, NH3, HOx, and NOx). The biomass burning contributions to some of the precursors can be considerable. Accordingly, we quantify the impact of the emissions on major inorganic aerosols in April-October 2012-2014 using a regional model simulation verified by extensive surface observations throughout the U.S. Simulated CO enhancements on an hourly basis are used to classify the U.S. into weak-moderate (520ppbv). This separation not only facilitates the identification of the spatial frequency of the impact but also helps to filter out nonimpacted periods, enabling us to focus on long-term contributions. Despite the nonlinear responses of several trace gases to emissions, we observe increases (weak-moderate and strong) in daily surface SO42- (1.160.32 and 6.57 +/- 4.65 nmol/m(3)), NO3- (0.36 +/- 0.63, 4.707.05nmol/m(3)), and NH4+ (2.70 +/- 0.92 and 17.82 +/- 15.17 nmol/m(3)) on a national scale. These primarily resulted from (i) increases in daily surface SO2 (0.02 +/- 0.01 and 0.10 +/- 0.07ppbv), afternoon OH (1.28 +/- 4.24 and 12.82 +/- 23.76ppqv), and H2O2 (0.06 +/- 0.02 and 0.10 +/- 0 .08ppbv), which may have accelerated the conversion of S(IV) to S(VI), and (ii) increases in daily surface NH3 (1.08 +/- 0.73 and 8.61 +/- 7.73nmol/m(3)) and HNO3 (1.44 +/- 0.48 and 7.15 +/- 4 .25 nmol/m(3)), which could have produced more particle-phase NH4NO3. In the West, where atmospheric moisture is limited, enhanced SO42- leaves less available water for NH4NO3 to become ions. Our results suggest that the major inorganic aerosol enhancement (mass) can reach to 23% of that of the carbonaceous aerosols.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000417195500043
WOS关键词SOUTHEAST UNITED-STATES ; CMAQ MODELING SYSTEM ; SATELLITE-OBSERVATIONS ; SURFACE OZONE ; PARTICULATE MATTER ; BOUNDARY-LAYER ; GLOBAL-MODEL ; WESTERN US ; PM2.5 ; WILDFIRES
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/32857
专题气候变化
作者单位1.Univ Houston, Dept Earth & Atmospher Sci, Houston, TX 77004 USA;
2.Pusan Natl Univ, Inst Environm Studies, Busan, South Korea;
3.Univ Utah, Dept Meteorol, Salt Lake City, UT 84112 USA;
4.Univ Colorado, Dept Math & Stat Sci, Denver, CO 80202 USA;
5.Int Ctr Integrated Mt Dev, Lalitpur, Nepal
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GB/T 7714
Souri, Amir H.,Choi, Yunsoo,Jeon, Wonbae,et al. Quantifying the Impact of Biomass Burning Emissions on Major Inorganic Aerosols and Their Precursors in the US[J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,2017,122(21).
APA Souri, Amir H..,Choi, Yunsoo.,Jeon, Wonbae.,Kochanski, Adam K..,Diao, Lijun.,...&Pan, Shuai.(2017).Quantifying the Impact of Biomass Burning Emissions on Major Inorganic Aerosols and Their Precursors in the US.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,122(21).
MLA Souri, Amir H.,et al."Quantifying the Impact of Biomass Burning Emissions on Major Inorganic Aerosols and Their Precursors in the US".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 122.21(2017).
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