Recently, realistic simulation of nitrous acid (HONO) based on the HONO/NOx ratio of 0.02 was found to have a significant impact on the global budgets of HOx (OH+HO2) and gas phase oxidation products in polluted regions, especially in winter when other photolytic sources are of minor importance. It has been reported that chemistry-transport models underestimate sulphate concentrations, mostly during winter. Here we show that simulating realistic HONO levels can significantly enhance aerosol sulphate (S(VI)) due to the increased formation of H2SO4. Even though in-cloud aqueous phase oxidation of dissolved SO2 (S(IV)) is the main source of S(VI), it appears that HONO related enhancement of H2O2 does not significantly affect sulphate because o...
HONO is an important precursor for OH radicals that impact secondary-pollutant production. However, ...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
The photolysis of HONO is important for the atmospheric HO<sub>x</sub> (OH + HO<sub&g...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
The photolysis of HONO is important for the atmospheric HOx (OH + HO2) radical budget and ozone form...
The photolysis of HONO is important for the atmospheric HOx (OH + HO2) radical budget and ozone form...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Haze events in China megacities involve the rapid oxidation of SO_2 to sulfate aerosol. Given the we...
Haze events in China megacities involve the rapid oxidation of SO_2 to sulfate aerosol. Given the we...
HONO is an important precursor for OH radicals that impact secondary-pollutant production. However, ...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
The photolysis of HONO is important for the atmospheric HO<sub>x</sub> (OH + HO<sub&g...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
The photolysis of HONO is important for the atmospheric HOx (OH + HO2) radical budget and ozone form...
The photolysis of HONO is important for the atmospheric HOx (OH + HO2) radical budget and ozone form...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Wintertime urban air pollution in many global megacities is characterised by episodic rapid increase...
Haze events in China megacities involve the rapid oxidation of SO_2 to sulfate aerosol. Given the we...
Haze events in China megacities involve the rapid oxidation of SO_2 to sulfate aerosol. Given the we...
HONO is an important precursor for OH radicals that impact secondary-pollutant production. However, ...
Recently, realistic simulation of nitrous acid (HONO) based on the HONO / NOx ratio of 0.02 was foun...
The photolysis of HONO is important for the atmospheric HO<sub>x</sub> (OH + HO<sub&g...