Multiphase buffering by ammonia sustains sulfate production in atmospheric aerosols

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Zheng, Guangjie, Su, Hang, Andreae, Meinrat O., Pöschl, Ulrich, Cheng, Yafang
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929402006208512
author Zheng, Guangjie
Su, Hang
Andreae, Meinrat O.
Pöschl, Ulrich
Cheng, Yafang
author_facet Zheng, Guangjie
Su, Hang
Andreae, Meinrat O.
Pöschl, Ulrich
Cheng, Yafang
contents Multiphase oxidation of sulfur dioxide (SO2) is an important source of sulfate in the atmosphere. There are, however, concerns that protons produced during SO2 oxidation may cause rapid acidification of aerosol water and thereby quickly shut down the fast reactions favored at high pH. Here, we show that the sustainability of sulfate production is controlled by the competing effects of multiphase buffering and acidification, which can be well described by a characteristic buffering time, τbuff. We find that globally, τbuff is long enough (days) to sustain sulfate production over most populated regions, where the acidification of aerosol water is counteracted by the strong buffering effect of NH4+/NH3. Our results highlight the importance of anthropogenic ammonia emissions and pervasive human influences in shaping the chemical environment of the atmosphere.
format Preprint
id arxiv_https___arxiv_org_abs_2406_19133
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multiphase buffering by ammonia sustains sulfate production in atmospheric aerosols
Zheng, Guangjie
Su, Hang
Andreae, Meinrat O.
Pöschl, Ulrich
Cheng, Yafang
Atmospheric and Oceanic Physics
Multiphase oxidation of sulfur dioxide (SO2) is an important source of sulfate in the atmosphere. There are, however, concerns that protons produced during SO2 oxidation may cause rapid acidification of aerosol water and thereby quickly shut down the fast reactions favored at high pH. Here, we show that the sustainability of sulfate production is controlled by the competing effects of multiphase buffering and acidification, which can be well described by a characteristic buffering time, τbuff. We find that globally, τbuff is long enough (days) to sustain sulfate production over most populated regions, where the acidification of aerosol water is counteracted by the strong buffering effect of NH4+/NH3. Our results highlight the importance of anthropogenic ammonia emissions and pervasive human influences in shaping the chemical environment of the atmosphere.
title Multiphase buffering by ammonia sustains sulfate production in atmospheric aerosols
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2406.19133