Literature DB >> 26847188

Assessment of diffusion parameters of new passive samplers using optical chemical sensor for on-site measuring formaldehyde in indoor air: experimental and numerical studies.

Jane Vignau-Laulhere1,2, Pierre Mocho3, Hervé Plaisance2, Katarzyna Raulin1, Valérie Desauziers4.   

Abstract

New passive samplers using a sensor consisting of a sol-gel matrix entrapping Fluoral-P as sampling media were developed for the determination of formaldehyde in indoor air. The reaction between Fluoral-P and formaldehyde produces a colored compound which is quantified on-site by means of a simple optical reading module. The advantages of this sensor are selectivity, low cost, ppb level limit of detection, and on-site direct measurement. In the development process, it is necessary to determine the sampling rate, a key parameter that cannot be directly assessed in the case of diffusive samplers using optical chemical sensor. In this study, a methodology combining experimental tests and numerical modeling is proposed and applied at five different radial diffusive samplers equipped with the same optical chemical sensor to assess the sampled material flows and sampling rates. These radial diffusive samplers differ in the internal volume of the sampler (18.97 and 6.14 cm(3)), the position of sensor inside the sampler (in front and offset of 1.2 cm above the membrane) and the width of the diffusion slot (1.4 and 5.9 mm). The influences of these three parameters (internal volume, position of sensor inside the sampler, and width of the diffusion slot) were assessed and discussed with regard to the formaldehyde sampling rate and water uptake by sensor (potential interference of measure). Numerical simulations based on Fick's laws are in agreement with the experimental results and provide to estimate the effective diffusion coefficient of formaldehyde through the membrane (3.50 × 10(-6) m(2) s(-1)). Conversion factors between the sensor response, sampled formaldehyde mass and sampling rate were also assessed.

Entities:  

Keywords:  Fluoral-P; Gas sensor; Mass transfer modeling; Radial diffusive samplers; Sampling rate

Year:  2016        PMID: 26847188     DOI: 10.1007/s00216-016-9317-2

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  1 in total

1.  Using the chemical mass balance model to estimate VOC source contributions in newly built timber frame houses: a case study.

Authors:  Herve Plaisance; Pierre Mocho; Nicolas Sauvat; Jane Vignau-Laulhere; Katarzyna Raulin; Valerie Desauziers
Journal:  Environ Sci Pollut Res Int       Date:  2017-09-07       Impact factor: 4.223

  1 in total

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