Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze

How sulfur dioxide emitted through coal combustion is oxidized to sulfate particles during winter haze pollution events has been the subject of debate. Here, the authors show that rapid oxidation takes place by nitrogen dioxide and nitrous acid, producing nitrous oxide together with sulfate.

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Autores principales: Junfeng Wang, Jingyi Li, Jianhuai Ye, Jian Zhao, Yangzhou Wu, Jianlin Hu, Dantong Liu, Dongyang Nie, Fuzhen Shen, Xiangpeng Huang, Dan Dan Huang, Dongsheng Ji, Xu Sun, Weiqi Xu, Jianping Guo, Shaojie Song, Yiming Qin, Pengfei Liu, Jay R. Turner, Hyun Chul Lee, Sungwoo Hwang, Hong Liao, Scot T. Martin, Qi Zhang, Mindong Chen, Yele Sun, Xinlei Ge, Daniel J. Jacob
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/de0ecf9102d0444db2ef0aeb147e5bfb
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spelling oai:doaj.org-article:de0ecf9102d0444db2ef0aeb147e5bfb2021-12-02T18:24:49ZFast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze10.1038/s41467-020-16683-x2041-1723https://doaj.org/article/de0ecf9102d0444db2ef0aeb147e5bfb2020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16683-xhttps://doaj.org/toc/2041-1723How sulfur dioxide emitted through coal combustion is oxidized to sulfate particles during winter haze pollution events has been the subject of debate. Here, the authors show that rapid oxidation takes place by nitrogen dioxide and nitrous acid, producing nitrous oxide together with sulfate.Junfeng WangJingyi LiJianhuai YeJian ZhaoYangzhou WuJianlin HuDantong LiuDongyang NieFuzhen ShenXiangpeng HuangDan Dan HuangDongsheng JiXu SunWeiqi XuJianping GuoShaojie SongYiming QinPengfei LiuJay R. TurnerHyun Chul LeeSungwoo HwangHong LiaoScot T. MartinQi ZhangMindong ChenYele SunXinlei GeDaniel J. JacobNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Junfeng Wang
Jingyi Li
Jianhuai Ye
Jian Zhao
Yangzhou Wu
Jianlin Hu
Dantong Liu
Dongyang Nie
Fuzhen Shen
Xiangpeng Huang
Dan Dan Huang
Dongsheng Ji
Xu Sun
Weiqi Xu
Jianping Guo
Shaojie Song
Yiming Qin
Pengfei Liu
Jay R. Turner
Hyun Chul Lee
Sungwoo Hwang
Hong Liao
Scot T. Martin
Qi Zhang
Mindong Chen
Yele Sun
Xinlei Ge
Daniel J. Jacob
Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
description How sulfur dioxide emitted through coal combustion is oxidized to sulfate particles during winter haze pollution events has been the subject of debate. Here, the authors show that rapid oxidation takes place by nitrogen dioxide and nitrous acid, producing nitrous oxide together with sulfate.
format article
author Junfeng Wang
Jingyi Li
Jianhuai Ye
Jian Zhao
Yangzhou Wu
Jianlin Hu
Dantong Liu
Dongyang Nie
Fuzhen Shen
Xiangpeng Huang
Dan Dan Huang
Dongsheng Ji
Xu Sun
Weiqi Xu
Jianping Guo
Shaojie Song
Yiming Qin
Pengfei Liu
Jay R. Turner
Hyun Chul Lee
Sungwoo Hwang
Hong Liao
Scot T. Martin
Qi Zhang
Mindong Chen
Yele Sun
Xinlei Ge
Daniel J. Jacob
author_facet Junfeng Wang
Jingyi Li
Jianhuai Ye
Jian Zhao
Yangzhou Wu
Jianlin Hu
Dantong Liu
Dongyang Nie
Fuzhen Shen
Xiangpeng Huang
Dan Dan Huang
Dongsheng Ji
Xu Sun
Weiqi Xu
Jianping Guo
Shaojie Song
Yiming Qin
Pengfei Liu
Jay R. Turner
Hyun Chul Lee
Sungwoo Hwang
Hong Liao
Scot T. Martin
Qi Zhang
Mindong Chen
Yele Sun
Xinlei Ge
Daniel J. Jacob
author_sort Junfeng Wang
title Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
title_short Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
title_full Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
title_fullStr Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
title_full_unstemmed Fast sulfate formation from oxidation of SO2 by NO2 and HONO observed in Beijing haze
title_sort fast sulfate formation from oxidation of so2 by no2 and hono observed in beijing haze
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/de0ecf9102d0444db2ef0aeb147e5bfb
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