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« Previous AbstractCharacterization of biogas and biomethane trace compounds: A critical review of advances in in situ sampling and preconcentration techniques    Next AbstractFrom foraging trails to transport networks: how the quality-distance trade-off shapes network structure »

RSC Adv


Title:Novel field-portable high-pressure adsorbent tube sampler prototype for the direct in situ preconcentration of trace compounds in gases at their working pressures: application to biomethane
Author(s):Lecharlier A; Carrier H; Bouyssiere B; Caumette G; Chiquet P; Le Hecho I;
Address:"Universite de Pau et des Pays de l'Adour, E2S UPPA, CNRS, TOTAL, LFCR UMR 5150 BP 1155 Avenue de l'Universite 64013 Pau Cedex France. Universite de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM UMR 5254 Technopole Helioparc, 2 Avenue du President Angot 64053 Pau Cedex 09 France isabelle.lehecho@univ-pau.fr. Terega 40 Avenue de l'Europe, CS 20 522 64010 Pau Cedex France"
Journal Title:RSC Adv
Year:2022
Volume:20220330
Issue:16
Page Number:10071 - 10087
DOI: 10.1039/d2ra00601d
ISSN/ISBN:2046-2069 (Electronic) 2046-2069 (Linking)
Abstract:"In Europe, renewable energy gases such as biomethane are aimed at substituting natural gas provided their stringent compliance to natural gas quality standards stipulating maximal levels of several chemical trace compounds (TC). Preconcentration is generally required to detect TC and inasmuch as biomethane is compressed for injection in the natural gas grid, preconcentration is commonly either done by collecting the bulk pressurized gas in a high-pressure cylinder or by first depressurizing it to collect a bulk volume in e.g. a gas sampling bag. Such whole gas samples are then transported to the lab and transferred to a preconcentration unit, entailing contamination and TC loss risks. Therefore, here a novel handy field-portable device for the direct in situ high-pressure preconcentration of TC is presented, enabling to sample gases at pressures up to 200 bar(a) through a self-assembled Tenax(R)TA + CarbopackX multibed adsorbent tube. The effect of the gas sampling pressure on the preconcentration of TC on adsorbent tubes was evaluated using a synthetic gas mixture containing 41 halogenated volatile organic compounds each at 1 ppm(mol) in N(2). At given normalized sampled volumes and in the pressure range 5-100 bar(a) handled in French gas transport grids, the pressure had no influence on the preconcentration when the gas circulates through the adsorbent tubes and as long as the adsorbents are not saturated. Next, for the first time, a real biomethane stream was sampled using the novel direct high-pressure preconcentration method on Tenax(R)TA + CarbopackX multibed adsorbent tubes, allowing to preconcentrate, in a single sampling run, a wide range of volatile organic TC. More than 26 distinct TC were detected, belonging to seven chemical families: alkenes, aromatics, alkanes (linear, cyclic and polycyclic), sulphur-compounds and terpenes, with linear alkanes (pentane, heptane, octane) and terpenes predominating. Semi-quantification indicated pentane, dimethylcyclopropane, hexane, heptane, octane, alpha-pinene and camphene are present at a
Keywords:
Notes:"PubMed-not-MEDLINELecharlier, Aurore Carrier, Herve Bouyssiere, Brice Caumette, Guilhem Chiquet, Pierre Le Hecho, Isabelle eng England 2022/04/16 RSC Adv. 2022 Mar 30; 12(16):10071-10087. doi: 10.1039/d2ra00601d. eCollection 2022 Mar 25"

 
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