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1L Tedlar® PLV Gas Sampling Bag w/Thermogreen® LB-2 Septa

Push/Pull Lock Valve (PLV)

Synonym(s):

Tedlar® Gas Sampling Bag

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About This Item

UNSPSC Code:
41104008

material

Tedlar® PVDF film

Agency

suitable for ASTM® D5504 (Sulfur Compounds in Natural Gas and Fuels by GC)
suitable for EPA 18 (Gaseous Organic Compounds; VOCs by GC)
suitable for EPA 40,TO-3,TO-15 (Volatile Organic Compounds (VOCs))
suitable for EPA TO-12 (Non-Methane Organic Compounds (NMOC))
suitable for EPA TO-14A (Volatile Organic Compounds (VOCs) by GC/MS)
suitable for NIOSH 3704 (Perchloroethylene)

description

septum type: yes; Thermogreen® LB-2

packaging

pkg of 10 bags

technique(s)

whole air sampling: suitable

W × L

7 in. × 9 in.

maximum volume

1 L

application(s)

air monitoring
environmental
industrial hygiene

compatibility

for use with Calibration mixes - gas phase standards/gas mixtures

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General description

Tedlar is recommended in several US EPA methods for sampling VOCs and sulfur compounds. Our Tedlar is made from a high-quality 2 mil Tedlar film for superior inertness, impermeability, sample integrity and good recovery data. Our Push Lock Valve (PLV) and seam-sealing process ensure that these bags are sturdy and virtually leak-proof, even under the most demanding sampling and shipping conditions.

Application

Tedlar bags can be used to contain air containing arsines, during determination of atmospheric stability of arsines.

Legal Information

ASTM is a registered trademark of American Society for Testing and Materials
Tedlar is a registered trademark of E. I. du Pont de Nemours and Company
Thermogreen is a registered trademark of Merck KGaA, Darmstadt, Germany

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Alveolar sampling and fast kinetics of tetrachloroethene in man. I. Alveolar sampling.
Opdam JJ and Smolders F.
British Journal of Industrial Medicine, 43 (12), 814-824 (1986)
A Enel et al.
Lab on a chip, 20(7), 1290-1297 (2020-03-12)
Digital microfluidics is known for fine manipulation of sub-millimeter samples, with applications from biological sample preparation to diagnostic testing. Unfortunately, until now, it has been only limited to liquid phases. In this paper, we present a new system based on
Atmospheric stability of arsines and the determination of their oxidative products in atmospheric aerosols (PM 10): evidence of the widespread phenomena of biovolatilization of arsenic.
Jakob R
Journal of Environmental Monitoring, 12 (2), 409-416 (2010)

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