224x Filetype PPTX File size 0.84 MB Source: web.alfredstate.edu
Flow scheme for GC reprised Flow scheme for High Performance Liquid Chromatograph 4) Sample mix is separated on 1) Solvents short ~10” packed column selected by quaternary 5) Separated components Mixing valve (A) detected at detector Packed column HPLC pump Detector (D) Quaternary flow mixing HPLC injector port solenoid valve (B) (sample in here too) 6) Exiting mixture 2) High pressure HPLC pump sucks selected is discarded here solvents into and through injector port (C) 3) Sample mix is injected into port and combined with solvents GC chromatogram HPLC chromatogram GC vs. HPLC 1. Thermal ramp 1. Solvent mixing/25 oC 2. Gas mobile phase (He) 2. Liquid mobile phase (solvents) 3. Flow produced by gas 3. Flow produced by pump pressure 4. Flow is often split 4. Flow is not split 5. Separated species often 5. Separated species can lost during detection often be recovered 6. Chemical apps common 6. Biological apps common 7. 10-20 m capillary 7. 0.25 m packed columns columns (long) (short) Single piston HPLC pump Must achieve maximum of 60- $3000-6000 120 MPa pressures without leaking or seal failure (600- 1200 atm=9000-18,000 psi)
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