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material
fused silica fiber
red hub
Quality Level
needle size
23 ga
packaging
pk of 3
greener alternative product characteristics
Waste Prevention
Safer Solvents and Auxiliaries
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sustainability
Greener Alternative Product
df
100 μm (PDMS)
technique(s)
solid phase microextraction (SPME): suitable
fiber L
1 cm
matrix active group
PDMS coating
application(s)
food and beverages
compatibility
Autosampler
for analyte group volatiles (MW 80-500)
greener alternative category
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Este artículo | 57342-U | 57300-U | 57289-U |
|---|---|---|---|
| material fused silica fiber, plain red hub | material fused silica fiber, plain red hub | material fused silica fiber, plain red hub | material fused silica fiber, plain yellow hub |
| compatibility for analyte group volatiles (MW 80-500), for use with autosampler | compatibility for analyte group volatiles (MW 80-500), for use with manual holder | compatibility for analyte group volatiles (MW 80-500), for use with manual holder | compatibility for analyte group volatiles (MW 80-500), for use with autosampler |
| df 100 μm (PDMS) | df 100 μm (PDMS) | df 100 μm (PDMS) | df 30 μm (PDMS) |
| matrix active group PDMS coating | matrix active group PDMS coating | matrix active group PDMS coating | matrix active group PDMS coating |
| needle size 23 ga | needle size 23 ga | needle size 24 ga | needle size 23 ga |
| packaging pkg of 3 × ea | packaging pkg of 3 × ea | packaging pkg of 3 × ea | packaging pkg of 3 × ea |
General description
Application
used together
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Artículos
Development and validation of a headspace SPME and GC-MS method to determine alcohol content in twenty different Kombucha tea samples.
A throughput HS-SPME-GC-MS method to analyze volatile compounds in Perilla leaves at low extraction temperatures using four different SPME fibers.
The work describes the development of an HS-SPME-GC-MS method to determine 2-chloroethanol as a marker of fumigant ethylene oxide in different kinds of sesame seed samples.
Protocolos
SPME offers efficient sample preparation for analyzing terpene/terpenoid profiles in plant essential oils using automation.
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