Analysis of Residual Solvents using GC/FID with Headspace and a Cyanopropylphenyl Polysiloxane Phase
Aplikace | 2010 | Thermo Fisher ScientificInstrumentace
GC, GC kolony, Spotřební materiál
ZaměřeníFarmaceutická analýza
VýrobceThermo Fisher Scientific
Klíčová slovasolvents, residual, xylene, agitator, peak, trace, headspace, scientific, identification, triplus, anccsressolv, ultra, north, thermo, america, part, benzene, cyanopropylphenyl, confirmation, fid, noise, other, tetralin, used, nitromethane, selectivity, acetonitrile, enquiries, procedure, efficiency, autosampler, polysiloxane, methylcyclohexane, signal, good, min, shake, flow, analysis, trichloroethylene, obtained, chromatographic, incubation, cyclohexane, kingdom, graphite, pyridine, quartz, resolution, column
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Analysis of residual solvents using GC/FID with headspace and a cyanopropylphenyl polysiloxane phase
2010|Thermo Fisher Scientific|Postery
Analysis of residual solvents using GC/FID with headspace and a cyanopropylphenyl polysiloxane phase A. Khan, L. Pereira, V. Barattini, T. Edge Thermo Fisher Scientific, Runcorn, Cheshire, UK A Thermo Scientific TRACE Ultra GC system with a Thermo Scientific TriPlus Autosampler…
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Routine-grade performance of a new static headspace autosampler for the analysis of residual solvents according to USP <467> method
2018|Thermo Fisher Scientific|Aplikace
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TECHNICAL NOTE 10679 Routine-grade quantitative performance of TriPlus 500 Headspace Autosampler coupled to TRACE 1310 GC-FID Authors Introduction Giulia Riccardino and Cristian Cojocariu, Thermo Fisher Scientific, Runcorn, UK. Testing pharmaceutical products for their potential residual solvents that are used or…
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2016|Thermo Fisher Scientific|Aplikace
Andrea Caruso and Massimo Santoro, Thermo Fisher Scientific, Milan, Italy Appli cat i on N ote 1 0 3 1 6 Analyzing Residual Solvents in Pharmaceutical Products Using GC Headspace with Valve-and-Loop Sampling Key Words USP Method <467>, residual solvents,…
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