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References from Aqueous Photochemistry of Pyruvic Acid: H2O2 Formation and Enhanced SO2-to-Sulfate Conversion. Local targets link to admitted publications; unresolved targets remain external evidence.
Hydrogen peroxide serves as pivotal fountainhead for aerosol aqueous sulfate formation from a global perspective
10.1038/s41467-024-48793-1 · 2024 · External reference
Dark air–liquid interfacial chemistry of glyoxal and hydrogen peroxide
10.1038/s41612-019-0085-5 · 2019 · External reference
Measurements of peroxides and what they tell us
10.1021/cr0205053 · 2003 · External reference
Atmosphere hydrogen peroxide and organic hydroperoxides: A review
10.1080/10643389991259209 · 1999 · External reference
Studies on the formation of H2O2 in the ozonolysis of alkenes
10.1016/0960-1686(93)90070-f · 1993 · External reference
Aqueous-phase photochemical formation of peroxides in authentic cloud and fog waters
10.1126/science.8465202 · 1993 · External reference
Aqueous-phase photolysis of biacetyl (An α-dicarbonyl compound): A sink for biacetyl, and a source of acetic acid, peroxyacetic acid, hydrogen peroxide, and the highly oxidizing acetylperoxyl radical in aqueous aerosols, fogs, and clouds
10.1016/s1352-2310(96)00171-9 · 1997 · External reference
Direct aqueous photochemistry of methylglyoxal and its effect on sulfate formation
10.1016/j.scitotenv.2024.171519 · 2024 · External reference
Reaction characteristics of Al–Mg alloy fuels with heterogeneous oxidation shell structures
10.1016/j.cej.2024.153384 · 2024 · External reference
Hydrogen peroxide and organic hydroperoxide in the troposphere: a review
10.1016/s1352-2310(99)00432-x · 2000 · External reference
Atmospheric peroxides in a polluted subtropical environment: Seasonal variation, sources and sinks, and importance of heterogeneous processes
10.1021/es403229x · 2014 · External reference
Wintertime photochemistry in Beijing: observations of ROx radical concentrations in the North China Plain during the BEST-ONE campaign
10.5194/acp-18-12391-2018 · 2018 · External reference
Particle-phase photoreactions of HULIS and TMIs establish a strong source of H2O2 and particulate sulfate in the winter North China Plain
10.1021/acs.est.1c00561 · 2021 · External reference
High H2O2 concentrations observed during haze periods during the winter in Beijing: Importance of H2O2 oxidation in sulfate formation
10.1021/acs.estlett.8b00579 · 2018 · External reference
Ecological effects of particulate matter
10.1016/s0160-4120(02)00181-2 · 2003 · External reference
Targeting atmospheric oxidants can better reduce sulfate aerosol in China: H2O2 aqueous oxidation pathway dominates sulfate formation in haze
10.1021/acs.est.2c01739 · 2022 · External reference
Photochemical production of dissolved inorganic carbon from terrestrial organic matter: Significance to the oceanic organic carbon cycle
10.1029/94gl03344 · 1995 · External reference
Volatility change during droplet evaporation of pyruvic acid
10.1021/acsearthspacechem.0c00044 · 2020 · External reference
Chemical characterization of water-soluble organic acids in PM2.5 in Beijing, China
10.1016/j.atmosenv.2004.08.038 · 2005 · External reference
Molecular distributions of diacids, oxoacids, and α-dicarbonyls in summer- and winter-time fine aerosols from Tianjin, North China: Emissions from combustion sources and aqueous phase secondary formation
10.1029/2020jd032961 · 2021 · External reference
High abundances of dicarboxylic acids, oxocarboxylic acids, and α-dicarbonyls in fine aerosols (PM2.5) in Chengdu, China during wintertime haze pollution
10.1007/s11356-015-4548-x · 2015 · External reference
On the rise: Experimental and computational vibrational sum frequency spectroscopy studies of pyruvic acid and its surface-active oligomer species at the air–water interface
10.1021/acs.jpca.9b08854 · 2019 · External reference
Cooperative hydration of pyruvic acid in ice
10.1021/ja062039v · 2006 · External reference
Reactivity of ketyl and acetyl radicals from direct solar actinic photolysis of aqueous pyruvic Acid
10.1021/acs.jpca.6b11916 · 2017 · External reference
Photochemical kinetics of pyruvic acid in aqueous solution
10.1021/jp502186q · 2014 · External reference
Photoinduced oligomerization of aqueous pyruvic acid
10.1021/jp056097z · 2006 · External reference
Photogeneration of distant radical pairs in aqueous pyruvic acid glasses
10.1021/jp053449t · 2006 · External reference
Photochemistry of aqueous pyruvic acid
10.1073/pnas.1303206110 · 2013 · External reference
10.1029/2006jd007886
10.1029/2006jd007886 · External reference
Production of singlet oxygen (1O2) during the photochemistry of aqueous pyruvic acid: The effects of pH and photon flux under steady-state O2(aq) concentration
10.1021/acs.est.9b03742 · 2019 · External reference
The effects of reactant concentration and air flow rate in the consumption of dissolved O2 during the photochemistry of aqueous pyruvic acid
10.3390/molecules24061124 · 2019 · External reference
Link between isoprene and secondary organic aerosol (SOA): Pyruvic acid oxidation yields low volatility organic acids in clouds
10.1029/2005gl025374 · 2006 · External reference
Investigation of pyruvic acid photolysis at the air-liquid interface as a source of aqueous secondary organic aerosols
10.1016/j.scitotenv.2024.172729 · 2024 · External reference
Mechanistic description of photochemical oligomer formation from aqueous pyruvic acid
10.1021/acs.jpca.7b03310 · 2017 · External reference
Impact of pH and NaCl and CaCl2 salts on the speciation and photochemistry of pyruvic acid in the aqueous phase
10.1021/acs.jpca.0c01016 · 2020 · External reference
Kinetics of the nitrate-mediated photooxidation of monocarboxylic acids in the aqueous phase
10.1039/d2em00458e · 2023 · External reference
Exploring the ionic strength effects on the photochemical degradation of pyruvic acid in atmospheric deliquescent aerosol particles
10.1016/j.atmosenv.2018.05.016 · 2018 · External reference
Enhanced acidity of acetic and pyruvic acids on the surface of water
10.1021/acs.langmuir.8b01606 · 2018 · External reference
Aqueous photochemistry of brown carbon: H2O2 formation, enhanced SO2 oxidation, and the real role of excited triplets
10.1016/j.atmosenv.2025.121366 · 2025 · External reference
Determination of H2O2 and organic peroxides by high-performance liquid chromatography with post-column UV irradiation, derivatization and fluorescence detection
10.1007/s002160050847 · 1998 · External reference
Simultaneous determination of hydrogen peroxide and organic hydroperoxides in eater
10.1080/0306731021000019205 · 2002 · External reference
Evidence for aqueous phase hydrogen peroxide synthesis in the troposphere
10.1029/jc087ic04p03045 · 1982 · External reference
Reactivity of pyruvic acid and its derivatives towards reactive oxygen species
10.1002/bio.2879 · 2015 · External reference
Is pyruvate an endogenous anti-inflammatory molecule?
10.1016/j.nut.2006.05.009 · 2006 · External reference
Mechanism of decarboxylation of pyruvic acid in the presence of hydrogen peroxide
10.1002/jps.24653 · 2016 · External reference
Oxidation of α-diketones andα-keto-acids by hydrogen peroxide
10.1038/163444a0 · 1949 · External reference
alpha-Ketoacids scavenge H2O2 in vitro and in vivo and reduce menadione-induced DNA injury and cytotoxicity
10.1152/ajpcell.1995.268.1.c227 · 1995 · External reference
Near infrared photochemistry of pyruvic acid in aqueous solution
10.1021/jp2087972 · 2012 · External reference
Photoactivation of chlorine and its catalytic role in the formation of sulfate aerosols
10.1021/jacs.3c10840 · 2024 · External reference
The UV–VIS absorption cross sections of the α-dicarbonyl compounds: pyruvic acid, biacetyl and glyoxal
10.1016/s1010-6030(01)00601-3 · 2001 · External reference
Full solar-spectrum power-generation system based on high efficiency and widespectral splitter film and fresnel lens
10.1109/access.2021.3119287 · 2021 · External reference
Near-infrared photochemistry at interfaces based on upconverting nanoparticles
10.1039/c7cp01838j · 2017 · External reference
Aqueous chemistry and its role in secondary organic aerosol (SOA) formation
10.5194/acp-10-10521-2010 · 2010 · External reference
Sunlight-initiated Chemistry of Aqueous Pyruvic Acid: Building Complexity in the Origin of Life
10.1007/s11084-013-9349-y · 2013 · External reference
Hydroxyl radical formation in aqueous reactions (pH 3–8) of iron(II) with hydrogen peroxide: the photo-Fenton reaction
10.1021/es00026a011 · 1992 · External reference
Overlooked formation of H2O2 during the hydroxyl radical-scavenging process when using alcohols as scavengers
10.1021/acs.est.1c03796 · 2022 · External reference
Roles of bromine radicals and hydroxyl radicals in the degradation of micropollutants by the UV/bromine process
10.1021/acs.est.0c00723 · 2020 · External reference
Oxidation of bromide ions by hydroxyl radicals: Spectral characterization of the intermediate BrOH•–
10.1021/jp310759u · 2013 · External reference
Photochemistry of acetylacetone: Droplets-mediated H2O2 generation and SO2 oxidation
10.1016/j.atmosenv.2025.121625 · 2025 · External reference
Participation of the halogens in photochemical reactions in natural and treated waters
10.3390/molecules22101684 · 2017 · External reference
Role of halide ions on organic pollutants degradation by peroxygens-based advanced oxidation processes: A critical review
10.1016/j.cej.2022.134546 · 2022 · External reference
Accurate identification of radicals by in-situ electron paramagnetic resonance in ultraviolet-based homogenous advanced oxidation processes
10.1016/j.watres.2022.118747 · 2022 · External reference
Organic peroxyl radicals from biacetyl accelerated the visible-light degradation of steroid estrogens in aqueous solution
10.1016/j.chemosphere.2024.141195 · 2024 · External reference
Identification and transformation of reactive species in peracetic acid catalytic activation systems using in situ electron paramagnetic resonance
10.1021/acs.est.5c08289 · 2025 · External reference
Influence of conformation on the EPR spectrum of 5,5-dimethyl-1-hydroperoxy-1-pyrrolidinyloxyl: A spin trapped adduct of superoxide
10.1021/jo0354894 · 2004 · External reference
Reactivity of HO2•/O2•– radicals in aqueous solution
10.1063/1.555739 · 1985 · External reference
On the atmospheric degradation of pyruvic acid in the gas phase
10.1016/s1010-6030(03)00070-4 · 2003 · External reference
Atmospheric simulation chamber studies of the gas-phase photolysis of pyruvic acid
10.1021/acs.jpca.7b05139 · 2017 · External reference
Photochemistry of pyruvic acid is governed by photo-induced intermolecular electron transfer through hydrogen bonds
10.1039/d2sc03038a · 2022 · External reference
SOA from methylglyoxal in clouds and wet aerosols: Measurement and prediction of key products
10.1016/j.atmosenv.2010.08.045 · 2010 · External reference
Evidence for oligomer formation in clouds: Reactions of isoprene oxidation products
10.1021/es052170n · 2006 · External reference
The mechanism of the photo-induced decarboxylatton of pyruvic acid in solution
10.1016/0009-2614(81)85239-6 · 1981 · External reference
Tropospheric aqueous-phase chemistry: Kinetics, mechanisms, and its coupling to a changing gas phase
10.1021/cr500447k · 2015 · External reference
Environmental Chemistry
2010 · External reference
Aqueous photochemistry of 2-oxocarboxylic acids: Evidence, mechanisms, and atmospheric impact
10.3390/molecules26175278 · 2021 · External reference
Oxidation of substituted catechols at the air–water interface: Production of carboxylic acids, quinones, and polyphenols
10.1021/acs.est.7b00232 · 2017 · External reference
Reactivity of pyruvic acid and its derivatives towards reactive oxygen species
10.1002/bio.2879 · ExternalCitation · doi-reference
Mechanism of decarboxylation of pyruvic acid in the presence of hydrogen peroxide
10.1002/jps.24653 · ExternalCitation · doi-reference
Determination of H2O2 and organic peroxides by high-performance liquid chromatography with post-column UV irradiation, derivatization and fluorescence detection
10.1007/s002160050847 · ExternalCitation · doi-reference
Sunlight-initiated Chemistry of Aqueous Pyruvic Acid: Building Complexity in the Origin of Life
10.1007/s11084-013-9349-y · ExternalCitation · doi-reference
High abundances of dicarboxylic acids, oxocarboxylic acids, and α-dicarbonyls in fine aerosols (PM2.5) in Chengdu, China during wintertime haze pollution
10.1007/s11356-015-4548-x · ExternalCitation · doi-reference
The mechanism of the photo-induced decarboxylatton of pyruvic acid in solution
10.1016/0009-2614(81)85239-6 · ExternalCitation · doi-reference
Studies on the formation of H2O2 in the ozonolysis of alkenes
10.1016/0960-1686(93)90070-f · ExternalCitation · doi-reference
Chemical characterization of water-soluble organic acids in PM2.5 in Beijing, China
10.1016/j.atmosenv.2004.08.038 · ExternalCitation · doi-reference
SOA from methylglyoxal in clouds and wet aerosols: Measurement and prediction of key products
10.1016/j.atmosenv.2010.08.045 · ExternalCitation · doi-reference
Exploring the ionic strength effects on the photochemical degradation of pyruvic acid in atmospheric deliquescent aerosol particles
10.1016/j.atmosenv.2018.05.016 · ExternalCitation · doi-reference
Aqueous photochemistry of brown carbon: H2O2 formation, enhanced SO2 oxidation, and the real role of excited triplets
10.1016/j.atmosenv.2025.121366 · ExternalCitation · doi-reference
Photochemistry of acetylacetone: Droplets-mediated H2O2 generation and SO2 oxidation
10.1016/j.atmosenv.2025.121625 · ExternalCitation · doi-reference
Role of halide ions on organic pollutants degradation by peroxygens-based advanced oxidation processes: A critical review
10.1016/j.cej.2022.134546 · ExternalCitation · doi-reference
Reaction characteristics of Al–Mg alloy fuels with heterogeneous oxidation shell structures
10.1016/j.cej.2024.153384 · ExternalCitation · doi-reference
Organic peroxyl radicals from biacetyl accelerated the visible-light degradation of steroid estrogens in aqueous solution
10.1016/j.chemosphere.2024.141195 · ExternalCitation · doi-reference
Is pyruvate an endogenous anti-inflammatory molecule?
10.1016/j.nut.2006.05.009 · ExternalCitation · doi-reference
Direct aqueous photochemistry of methylglyoxal and its effect on sulfate formation
10.1016/j.scitotenv.2024.171519 · ExternalCitation · doi-reference
Investigation of pyruvic acid photolysis at the air-liquid interface as a source of aqueous secondary organic aerosols
10.1016/j.scitotenv.2024.172729 · ExternalCitation · doi-reference
Accurate identification of radicals by in-situ electron paramagnetic resonance in ultraviolet-based homogenous advanced oxidation processes
10.1016/j.watres.2022.118747 · ExternalCitation · doi-reference
Ecological effects of particulate matter
10.1016/s0160-4120(02)00181-2 · ExternalCitation · doi-reference
The UV–VIS absorption cross sections of the α-dicarbonyl compounds: pyruvic acid, biacetyl and glyoxal
10.1016/s1010-6030(01)00601-3 · ExternalCitation · doi-reference
On the atmospheric degradation of pyruvic acid in the gas phase
10.1016/s1010-6030(03)00070-4 · ExternalCitation · doi-reference
Aqueous-phase photolysis of biacetyl (An α-dicarbonyl compound): A sink for biacetyl, and a source of acetic acid, peroxyacetic acid, hydrogen peroxide, and the highly oxidizing acetylperoxyl radical in aqueous aerosols, fogs, and clouds
10.1016/s1352-2310(96)00171-9 · ExternalCitation · doi-reference
Hydrogen peroxide and organic hydroperoxide in the troposphere: a review
10.1016/s1352-2310(99)00432-x · ExternalCitation · doi-reference
Roles of bromine radicals and hydroxyl radicals in the degradation of micropollutants by the UV/bromine process
10.1021/acs.est.0c00723 · ExternalCitation · doi-reference
Particle-phase photoreactions of HULIS and TMIs establish a strong source of H2O2 and particulate sulfate in the winter North China Plain
10.1021/acs.est.1c00561 · ExternalCitation · doi-reference
Overlooked formation of H2O2 during the hydroxyl radical-scavenging process when using alcohols as scavengers
10.1021/acs.est.1c03796 · ExternalCitation · doi-reference
Targeting atmospheric oxidants can better reduce sulfate aerosol in China: H2O2 aqueous oxidation pathway dominates sulfate formation in haze
10.1021/acs.est.2c01739 · ExternalCitation · doi-reference
Identification and transformation of reactive species in peracetic acid catalytic activation systems using in situ electron paramagnetic resonance
10.1021/acs.est.5c08289 · ExternalCitation · doi-reference
Oxidation of substituted catechols at the air–water interface: Production of carboxylic acids, quinones, and polyphenols
10.1021/acs.est.7b00232 · ExternalCitation · doi-reference
Production of singlet oxygen (1O2) during the photochemistry of aqueous pyruvic acid: The effects of pH and photon flux under steady-state O2(aq) concentration
10.1021/acs.est.9b03742 · ExternalCitation · doi-reference
High H2O2 concentrations observed during haze periods during the winter in Beijing: Importance of H2O2 oxidation in sulfate formation
10.1021/acs.estlett.8b00579 · ExternalCitation · doi-reference
Impact of pH and NaCl and CaCl2 salts on the speciation and photochemistry of pyruvic acid in the aqueous phase
10.1021/acs.jpca.0c01016 · ExternalCitation · doi-reference
Reactivity of ketyl and acetyl radicals from direct solar actinic photolysis of aqueous pyruvic Acid
10.1021/acs.jpca.6b11916 · ExternalCitation · doi-reference
Mechanistic description of photochemical oligomer formation from aqueous pyruvic acid
10.1021/acs.jpca.7b03310 · ExternalCitation · doi-reference
Atmospheric simulation chamber studies of the gas-phase photolysis of pyruvic acid
10.1021/acs.jpca.7b05139 · ExternalCitation · doi-reference
On the rise: Experimental and computational vibrational sum frequency spectroscopy studies of pyruvic acid and its surface-active oligomer species at the air–water interface
10.1021/acs.jpca.9b08854 · ExternalCitation · doi-reference
Enhanced acidity of acetic and pyruvic acids on the surface of water
10.1021/acs.langmuir.8b01606 · ExternalCitation · doi-reference
Volatility change during droplet evaporation of pyruvic acid
10.1021/acsearthspacechem.0c00044 · ExternalCitation · doi-reference
Measurements of peroxides and what they tell us
10.1021/cr0205053 · ExternalCitation · doi-reference
Tropospheric aqueous-phase chemistry: Kinetics, mechanisms, and its coupling to a changing gas phase
10.1021/cr500447k · ExternalCitation · doi-reference
Hydroxyl radical formation in aqueous reactions (pH 3–8) of iron(II) with hydrogen peroxide: the photo-Fenton reaction
10.1021/es00026a011 · ExternalCitation · doi-reference
Evidence for oligomer formation in clouds: Reactions of isoprene oxidation products
10.1021/es052170n · ExternalCitation · doi-reference
Atmospheric peroxides in a polluted subtropical environment: Seasonal variation, sources and sinks, and importance of heterogeneous processes
10.1021/es403229x · ExternalCitation · doi-reference
Cooperative hydration of pyruvic acid in ice
10.1021/ja062039v · ExternalCitation · doi-reference
Photoactivation of chlorine and its catalytic role in the formation of sulfate aerosols
10.1021/jacs.3c10840 · ExternalCitation · doi-reference
Influence of conformation on the EPR spectrum of 5,5-dimethyl-1-hydroperoxy-1-pyrrolidinyloxyl: A spin trapped adduct of superoxide
10.1021/jo0354894 · ExternalCitation · doi-reference
Photogeneration of distant radical pairs in aqueous pyruvic acid glasses
10.1021/jp053449t · ExternalCitation · doi-reference
Photoinduced oligomerization of aqueous pyruvic acid
10.1021/jp056097z · ExternalCitation · doi-reference
Near infrared photochemistry of pyruvic acid in aqueous solution
10.1021/jp2087972 · ExternalCitation · doi-reference
Oxidation of bromide ions by hydroxyl radicals: Spectral characterization of the intermediate BrOH•–
10.1021/jp310759u · ExternalCitation · doi-reference
Photochemical kinetics of pyruvic acid in aqueous solution
10.1021/jp502186q · ExternalCitation · doi-reference
Link between isoprene and secondary organic aerosol (SOA): Pyruvic acid oxidation yields low volatility organic acids in clouds
10.1029/2005gl025374 · ExternalCitation · doi-reference
10.1029/2006jd007886
10.1029/2006jd007886 · ExternalCitation · doi-reference
Molecular distributions of diacids, oxoacids, and α-dicarbonyls in summer- and winter-time fine aerosols from Tianjin, North China: Emissions from combustion sources and aqueous phase secondary formation
10.1029/2020jd032961 · ExternalCitation · doi-reference
Photochemical production of dissolved inorganic carbon from terrestrial organic matter: Significance to the oceanic organic carbon cycle
10.1029/94gl03344 · ExternalCitation · doi-reference
Evidence for aqueous phase hydrogen peroxide synthesis in the troposphere
10.1029/jc087ic04p03045 · ExternalCitation · doi-reference
Oxidation of α-diketones andα-keto-acids by hydrogen peroxide
10.1038/163444a0 · ExternalCitation · doi-reference
Hydrogen peroxide serves as pivotal fountainhead for aerosol aqueous sulfate formation from a global perspective
10.1038/s41467-024-48793-1 · ExternalCitation · doi-reference
Dark air–liquid interfacial chemistry of glyoxal and hydrogen peroxide
10.1038/s41612-019-0085-5 · ExternalCitation · doi-reference
Near-infrared photochemistry at interfaces based on upconverting nanoparticles
10.1039/c7cp01838j · ExternalCitation · doi-reference
Kinetics of the nitrate-mediated photooxidation of monocarboxylic acids in the aqueous phase
10.1039/d2em00458e · ExternalCitation · doi-reference
Photochemistry of pyruvic acid is governed by photo-induced intermolecular electron transfer through hydrogen bonds
10.1039/d2sc03038a · ExternalCitation · doi-reference
Reactivity of HO2•/O2•– radicals in aqueous solution
10.1063/1.555739 · ExternalCitation · doi-reference
Photochemistry of aqueous pyruvic acid
10.1073/pnas.1303206110 · ExternalCitation · doi-reference
Simultaneous determination of hydrogen peroxide and organic hydroperoxides in eater
10.1080/0306731021000019205 · ExternalCitation · doi-reference
Atmosphere hydrogen peroxide and organic hydroperoxides: A review
10.1080/10643389991259209 · ExternalCitation · doi-reference
Full solar-spectrum power-generation system based on high efficiency and widespectral splitter film and fresnel lens
10.1109/access.2021.3119287 · ExternalCitation · doi-reference
Aqueous-phase photochemical formation of peroxides in authentic cloud and fog waters
10.1126/science.8465202 · ExternalCitation · doi-reference
alpha-Ketoacids scavenge H2O2 in vitro and in vivo and reduce menadione-induced DNA injury and cytotoxicity
10.1152/ajpcell.1995.268.1.c227 · ExternalCitation · doi-reference
Participation of the halogens in photochemical reactions in natural and treated waters
10.3390/molecules22101684 · ExternalCitation · doi-reference
The effects of reactant concentration and air flow rate in the consumption of dissolved O2 during the photochemistry of aqueous pyruvic acid
10.3390/molecules24061124 · ExternalCitation · doi-reference
Aqueous photochemistry of 2-oxocarboxylic acids: Evidence, mechanisms, and atmospheric impact
10.3390/molecules26175278 · ExternalCitation · doi-reference
Aqueous chemistry and its role in secondary organic aerosol (SOA) formation
10.5194/acp-10-10521-2010 · ExternalCitation · doi-reference
Wintertime photochemistry in Beijing: observations of ROx radical concentrations in the North China Plain during the BEST-ONE campaign
10.5194/acp-18-12391-2018 · ExternalCitation · doi-reference