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Judith C. Chow

Researcher at Desert Research Institute

Publications -  437
Citations -  35661

Judith C. Chow is an academic researcher from Desert Research Institute. The author has contributed to research in topics: Particulates & Aerosol. The author has an hindex of 96, co-authored 427 publications receiving 32632 citations. Previous affiliations of Judith C. Chow include United States Environmental Protection Agency & University of Nevada, Reno.

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The dri thermal/optical reflectance carbon analysis system: description, evaluation and applications in U.S. Air quality studies

TL;DR: In this paper, a variation of the thermal/optical reflectance method has been applied to over 27,000 samples taken in more than a dozen urban and regional air quality studies in the U.S.
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Spatial and seasonal distributions of carbonaceous aerosols over China

TL;DR: In this paper, simultaneous measurements of atmospheric organic and elemental carbon (OC and EC) were taken during winter and summer seasons at 2003 in 14 cities in China, and PM2.5 samples were analyzed for OC and EC by the Interagency Monitoring of Protected Visual Environments (IMPROVE) thermal/optical reflectance protocol.
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Comparison of IMPROVE and NIOSH Carbon Measurements

TL;DR: In this paper, the IMPROVE and NIOSH thermal evolution protocols were applied to 60 ambient and source samples from different environments using the same instrument to quantify differences in implemented protocols.
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Measurement Methods to Determine Compliance with Ambient Air Quality Standards for Suspended Particles

TL;DR: This review identifies issues related to measurement methods used to determine compliance with standards, describes current and future measurement methods and their limitations, and determines the extent to which existing technology can meet short-term and long-term needs for measuring compliance.
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The IMPROVE_A Temperature Protocol for Thermal/Optical Carbon Analysis: Maintaining Consistency with a Long-Term Database

TL;DR: A method to detect small quantities of O2 in the pure He carrier gas shows that O2 levels above 100 ppmv also affect the comparability of thermal carbon fractions but have little effect on the IMPROVE_TOR split between OC and EC.