John H Offenberg
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Explore the profile of John H Offenberg including associated specialties, affiliations and a list of published articles.
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Articles
46
Citations
458
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Recent Articles
1.
Mattila J, Offenberg J
J Air Waste Manag Assoc
. 2024 Jun;
74(8):531-539.
PMID: 38905230
Real-time measurements of short-chain (C < 8) per- and polyfluoroalkyl substances (PFAS) were performed in Central New Jersey air using chemical ionization mass spectrometry (CIMS). The CIMS was calibrated for...
2.
Mattila J, Krug J, Roberson W, Burnette R, McDonald S, Virtaranta L, et al.
Environ Sci Technol
. 2024 Feb;
58(8):3942-3952.
PMID: 38350647
Aqueous film-forming foams (AFFFs) are used in firefighting applications and often contain per- and polyfluoroalkyl substances (PFAS), which can detrimentally impact environmental and biological health. Incineration is a potential disposal...
3.
Mattila J, Li E, Offenberg J
J Air Waste Manag Assoc
. 2023 Feb;
73(5):335-344.
PMID: 36803440
Per- and polyfluoroalkyl substances (PFAS) are persistent environmental pollutants associated with negative health impacts. Assessments of tubing-related measurement bias for volatile PFAS are lacking, as gas-wall interactions with tubing can...
4.
Khan F, Jaoui M, Rudzinski K, Kwapiszewska K, Martinez-Romero A, Gil-Casanova D, et al.
Environ Pollut
. 2022 Feb;
301:119010.
PMID: 35217136
Nitrophenols (NPs) are hazardous pollutants found in various environmental matrices, including ambient fine particulate matter (PM), agricultural residues, rainwater, wildfires, and industrial wastes. This study showed for the first time...
5.
Olson D, Riedel T, Offenberg J, Lewandowski M, Long R, Kleindienst T
Atmos Environ (1994)
. 2021 Aug;
259:1-118538.
PMID: 34385886
This paper uses a machine learning model called a relevance vector machine (RVM) to quantify ozone (O) and nitrogen oxides (NO) formation under wintertime conditions. Field study measurements were based...
6.
Olson D, Offenberg J, Lewandowski M, Kleindienst T, Docherty K, Jaoui M, et al.
Atmos Environ (1994)
. 2021 Apr;
252.
PMID: 33897265
This research used data mining approaches to better understand factors affecting the formation of secondary organic aerosol (SOA). Although numerous laboratory and computational studies have been completed on SOA formation,...
7.
Al-Naiema I, Offenberg J, Madler C, Lewandowski M, Kettler J, Fang T, et al.
Atmos Environ (1994)
. 2021 Jan;
223.
PMID: 33424414
Tracers of secondary organic aerosols (SOA) from thirteen aromatic hydrocarbons were quantified in laboratory smog chamber experiments. Class-specific SOA tracers emerged, including 2,3-dihydroxy-4-oxo-pentatonic acid (DHOPA) from monoaromatic volatile organic compounds...
8.
Docherty K, Yaga R, Preston W, Jaoui M, Reidel T, Offenberg J, et al.
Atmos Environ (1994)
. 2020 Dec;
244(1).
PMID: 33364911
A series of chamber experiments was conducted to investigate the composition of secondary organic aerosol (SOA) following oxidation of a range of parent -alkanes (C-C) in the presence of NO...
9.
Yee L, Isaacman-VanWertz G, Wernis R, Meng M, Rivera V, Kreisberg N, et al.
Atmos Chem Phys
. 2020 Dec;
18(14):10433-10457.
PMID: 33354203
Biogenic volatile organic compounds (BVOCs) from the Amazon forest region represent the largest source of organic carbon emissions to the atmosphere globally. These BVOC emissions dominantly consist of volatile and...
10.
Docherty K, Corse E, Jaoui M, Offenberg J, Kleindienst T, Krug J, et al.
Aerosol Sci Technol
. 2019 Nov;
52(9):992-1004.
PMID: 31686721
The relationship between the oxidation state and relative volatility of secondary organic aerosol (SOA) from the oxidation of a wide range of hydrocarbons is investigated using a fast-stepping, scanning thermodenuder...