2019
DOI: 10.1016/j.chemosphere.2019.124537
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Accelerated equilibrium sampling of hydrophobic organic chemicals in solid matrices: A proof of concept on how to reach equilibrium for PCBs within 1 day

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Cited by 11 publications
(3 citation statements)
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“…Vitale, Knudsmark Sjøholm, Di Guardo, and Mayer (2019) studied two solid‐phase micro‐extraction techniques (vigorous agitation and increased headspace temperature) as means to reduce equilibration times for PCBs. They found that use of elevated headspace temperature produced faster equilibrium and the resulting data also facilitated calculation of PCB partition coefficients.…”
Section: Assessmentmentioning
confidence: 99%
“…Vitale, Knudsmark Sjøholm, Di Guardo, and Mayer (2019) studied two solid‐phase micro‐extraction techniques (vigorous agitation and increased headspace temperature) as means to reduce equilibration times for PCBs. They found that use of elevated headspace temperature produced faster equilibrium and the resulting data also facilitated calculation of PCB partition coefficients.…”
Section: Assessmentmentioning
confidence: 99%
“…Although SPME currently is well characterized, the fundamentals of SPME are still refined. Examples of more fundamental work published recently includes modeling of SPME of volatile organic compounds using porous coatings, headspace SPME under vacuum conditions, and accelerated equilibrium sampling of hydrophobic compounds in solid matrixes …”
Section: Solid-phase Microextractionmentioning
confidence: 99%
“…Examples of more fundamental work published recently includes modeling of SPME of volatile organic compounds using porous coatings, 156 headspace SPME under vacuum conditions, 157 and accelerated equilibrium sampling of hydrophobic compounds in solid matrixes. 158 In-tube SPME is a variant of traditional SPME, using a segment of open tubular fused-silica wall-coated capillary column as SPME device. In-tube SPME was introduced in 1997.…”
Section: ■ Solid-phase Microextractionmentioning
confidence: 99%