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NIST2783

Air particulate on filter media

NIST® SRM® 2783

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UNSPSC Code:
41116107
NACRES:
NA.24

grade

certified reference material

packaging

pkg of 2 +2 Blnk (47 mm dia)

manufacturer/tradename

NIST®

application(s)

industrial hygiene

format

matrix material

General description

This Standard Reference Material (SRM) is an air particulate sample reduced in particle size to simulate PM2.5 air particulate matter (particles with an aerodynamic equivalent diameter of 2.5 μm) and deposited on a polycarbonate filter membrane. It is primarily intended for use in the evaluation and calibration of methods of analysis for common and toxic elements contained in various fractions of airborne particulate matter collected on filter media. A unit of SRM 2783 includes two loaded filters and two blank filters. For more information, please refer to the SDS and COA.

SRM 2783_cert

SRM 2783_SDS

Other Notes

Certified for the analytes listed below.
Aluminum (Al), (Magnesium Mg), Arsenic (As), Manganese (Mn), Barium (Ba), Sodium (Na), Calcium (Ca), Nickel (Ni), Cobalt (Co), Lead (Pb), Chromium (Cr), Antimony (Sb), Copper (Cu), Titanium (Ti), Iron (Fe), Vanadium (V), Potassium (K), Zinc (Zn)

Reference/Informational value is provided for the following analytes.
Cerium (Ce), Silicon (Si), Rubidium (Rb), Samarium (Sm), Sulfur (S), Thorium (Th), Scandium (Sc), Uranium (U), Tungsten (W), Nickel (Ni), Chromium (Cr), Aluminium (Al), Sodium (Na), Barium (Ba), Cobalt (Co), Lead (Pb), Sulfur (S), Zinc (Zn)

See certificate for values and more details at nist.gov/SRM.

Legal Information

NIST is a registered trademark of National Institute of Standards and Technology
SRM is a registered trademark of National Institute of Standards and Technology

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


Certificates of Analysis (COA)

Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.

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Influence on the oxidative potential of a heavy-duty engine particle emission due to selective catalytic reduction system and biodiesel blend.
Godoi M H R, et al.
The Science of the Total Environment, 560, 179-185 (2016)

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