Low‐cost FloPump for regulated air sampling of volatile organic compounds

Premise We present a low‐cost, battery‐operated, portable pump, “FloPump,” which allows regulated air sampling for the study of volatile organic compounds (VOCs). VOCs are routinely investigated in applications such as atmospheric chemistry, agriculture, and fragrance biology. Methods and Results We...

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Main Authors: Preeti Saryan, Vinita Gowda
Format: Article
Language:English
Published: Wiley 2020-04-01
Series:Applications in Plant Sciences
Subjects:
Online Access:https://doi.org/10.1002/aps3.11343
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spelling doaj-f6b46a03f559411bb4c76ef6942051752020-11-25T03:04:40ZengWileyApplications in Plant Sciences2168-04502020-04-0184n/an/a10.1002/aps3.11343Low‐cost FloPump for regulated air sampling of volatile organic compoundsPreeti Saryan0Vinita Gowda1Department of Biological Sciences Indian Institute of Science Education and Research Bhopal Bhopal Bypass Road Bhopal Madhya Pradesh 462066 IndiaDepartment of Biological Sciences Indian Institute of Science Education and Research Bhopal Bhopal Bypass Road Bhopal Madhya Pradesh 462066 IndiaPremise We present a low‐cost, battery‐operated, portable pump, “FloPump,” which allows regulated air sampling for the study of volatile organic compounds (VOCs). VOCs are routinely investigated in applications such as atmospheric chemistry, agriculture, and fragrance biology. Methods and Results We compared the performance of FloPump with the Supelco pump in collecting VOCs using two test samples: guava fruit (Psidium guajava) and a perfume. The sampling and identification of volatiles was carried out using a dynamic headspace sampling method followed by gas chromatography–mass spectrometry. We show that the sampling efficiency of FloPump is comparable to the commercial pump, and at an affordable cost of ~US$115 (~86% cheaper), it provides a viable option for researchers interested in sampling volatiles on a constrained budget. Conclusions Accurate air sampling is critical for the study of VOCs. We propose that FloPump will make air sampling more affordable, thus encouraging studies of VOCs.https://doi.org/10.1002/aps3.11343dynamic headspace samplingfragrance analysismicro air samplerplant volatilesregulated air flow
collection DOAJ
language English
format Article
sources DOAJ
author Preeti Saryan
Vinita Gowda
spellingShingle Preeti Saryan
Vinita Gowda
Low‐cost FloPump for regulated air sampling of volatile organic compounds
Applications in Plant Sciences
dynamic headspace sampling
fragrance analysis
micro air sampler
plant volatiles
regulated air flow
author_facet Preeti Saryan
Vinita Gowda
author_sort Preeti Saryan
title Low‐cost FloPump for regulated air sampling of volatile organic compounds
title_short Low‐cost FloPump for regulated air sampling of volatile organic compounds
title_full Low‐cost FloPump for regulated air sampling of volatile organic compounds
title_fullStr Low‐cost FloPump for regulated air sampling of volatile organic compounds
title_full_unstemmed Low‐cost FloPump for regulated air sampling of volatile organic compounds
title_sort low‐cost flopump for regulated air sampling of volatile organic compounds
publisher Wiley
series Applications in Plant Sciences
issn 2168-0450
publishDate 2020-04-01
description Premise We present a low‐cost, battery‐operated, portable pump, “FloPump,” which allows regulated air sampling for the study of volatile organic compounds (VOCs). VOCs are routinely investigated in applications such as atmospheric chemistry, agriculture, and fragrance biology. Methods and Results We compared the performance of FloPump with the Supelco pump in collecting VOCs using two test samples: guava fruit (Psidium guajava) and a perfume. The sampling and identification of volatiles was carried out using a dynamic headspace sampling method followed by gas chromatography–mass spectrometry. We show that the sampling efficiency of FloPump is comparable to the commercial pump, and at an affordable cost of ~US$115 (~86% cheaper), it provides a viable option for researchers interested in sampling volatiles on a constrained budget. Conclusions Accurate air sampling is critical for the study of VOCs. We propose that FloPump will make air sampling more affordable, thus encouraging studies of VOCs.
topic dynamic headspace sampling
fragrance analysis
micro air sampler
plant volatiles
regulated air flow
url https://doi.org/10.1002/aps3.11343
work_keys_str_mv AT preetisaryan lowcostflopumpforregulatedairsamplingofvolatileorganiccompounds
AT vinitagowda lowcostflopumpforregulatedairsamplingofvolatileorganiccompounds
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