NOTICE: Due to a lapse in annual appropriations, most of this website is not being updated. Learn more.
Form submissions will still be accepted but will not receive responses at this time. Sections of this site for programs using non-appropriated funds (such as NVLAP) or those that are excepted from the shutdown (such as CHIPS and NVD) will continue to be updated.
An official website of the United States government
Here’s how you know
Official websites use .gov
A .gov website belongs to an official government organization in the United States.
Secure .gov websites use HTTPS
A lock (
) or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites.
LDTR Measurements of PSAP Particle-Laden Filters from the Biomass Burning Observation Project (BBOP) Field Campaign
Published
Author(s)
Cary Presser, Ashot Nazarian, Joseph M. Conny, Duli Chand, Arthur Sedlacek
Abstract
Absorptivity measurements in the infrared with the laser-driven thermal reactor (LDTR) at ambient conditions were carried out with particle-laden filters from a three-wavelength (visible) particle/soot absorption photometer (PSAP) obtained during the Biomass Burning Observation Project (BBOP) field campaign. The focus of this study was to validate whether the LDTR approach could provide results for particle absorption coefficient that are consistent with other commercially available instrumentation (in this case with the PSAP which has been compared with numerous other optical techniques). The technique measures material absorption directly, provides information on filter optical properties, and considers for the presence of the filter material and its effect of particle absorption (e.g., filter material and volatile organics effects on absorption enhancement', and particle loading effects leading to 'shadowing'). For measurements carried out under ambient conditions (as with the PSAP), only a thermocouple placed flush with the filter back surface and the laser probe beam impinging normal to the filter front particle-laden surface are required to ascertain particle absorptivity. Thus, in principle one can carried simultaneously both the transmission and absorption measurements (at different discrete wavelengths) with a simple arrangement to determine particle absorption coefficient. For this investigation, LDTR measurements were carried out with PSAP filters (pairs with both blank and exposed filters) from eight different days during the campaign, having different relatively light particle loadings. The observed particles coating the filters were thought to consist of soot (having broadband absorption characteristics) and viscous organic material (probably absorbing at shorter wavelengths). The LDTR analysis compared well with the PSAP results when compared to wavelength dependent results from an ultraviolet/visible spectrometer.
Presser, C.
, Nazarian, A.
, Conny, J.
, Chand, D.
and Sedlacek, A.
(2016),
LDTR Measurements of PSAP Particle-Laden Filters from the Biomass Burning Observation Project (BBOP) Field Campaign, Aerosol Science and Technology, [online], https://tsapps.nist.gov/publication/get_pdf.cfm?pub_id=920056
(Accessed October 7, 2025)