Solid-phase extraction column used cooperatively with GC-FID instrument and application thereof
A GC-FID, solid phase extraction column technology, applied in the detection of mineral oil contaminants in food, detection of mineral oil contaminants in food systems field, can solve the LVI sampling system stability and repeatability is not ideal, solid phase The application of extraction column is limited, and the solid-phase extraction column needs to be improved to achieve the effect of easy promotion, improved repeatability and accuracy, and good versatility
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Embodiment 1
[0080] Prepare the solid phase extraction column 1000 (such as Figure 16 shown):
[0081] (1) Prepare a 50mL glass chromatography column (i.e. hollow glass column 100). The bottom of the column tube is provided with an extraction column outlet, and a glass fiber sieve plate 101 is sintered close to the bottom of the column, and a glass fiber upper sieve plate matching the glass column is processed at the same time. 101 (pore diameter 10μm, thickness 1mm).
[0082] (2) Activated alumina: bake alumina with a particle size of 60 μm in a muffle furnace at 500° C. for 4 hours, and put it in a desiccator for later use.
[0083] (3) Activated silica gel: bake silica gel with a particle size of 60 μm in a muffle furnace at 500° C. for 4 hours, take it out after cooling, and put it in a desiccator for later use.
[0084] (4) Preparation of silver nitrate-stained silica gel: Accurately weigh analytically pure silver nitrate in a volumetric flask, dissolve it with distilled water and ...
Embodiment 2
[0088] Prepare the solid phase extraction column 1000 (such as Figure 16 shown):
[0089] (1) Prepare a 100mL glass chromatography column (i.e., a hollow glass column 100). The bottom of the column tube is provided with an outlet of the extraction column, and a glass fiber sieve plate 101 is sintered close to the bottom of the column, and a glass fiber upper sieve plate matching the glass column is processed at the same time. 101 (pore diameter 50μm, thickness 3mm).
[0090] (2) Activated alumina: bake alumina with a particle size of 200 μm in a muffle furnace at 600° C. for 6 hours, and put it in a desiccator for use.
[0091] (3) Activated silica gel: bake silica gel with a particle size of 200 μm in a muffle furnace at 600° C. for 6 hours, take it out after cooling, and put it in a desiccator for later use.
[0092] (4) Preparation of silver nitrate-stained silica gel: Accurately weigh analytically pure silver nitrate in a volumetric flask, dissolve it with distilled wat...
Embodiment 3
[0096] Prepare the solid phase extraction column 1000 (such as Figure 16 shown):
[0097] (1) Prepare a 75mL glass chromatography column (i.e. hollow glass column 100). The bottom of the column tube is provided with an outlet of the extraction column, and a glass fiber sieve plate 101 is sintered close to the bottom of the column, and a glass fiber upper sieve plate matching the glass column is processed at the same time. 101 (pore size 30μm, thickness 2mm).
[0098] (2) Activated alumina: bake alumina with a particle size of 130 μm in a muffle furnace at 550° C. for 5 hours, and put it in a desiccator for use.
[0099] (3) Activated silica gel: bake silica gel with a particle size of 130 μm in a muffle furnace at 550° C. for 5 hours, take it out after cooling, and put it in a desiccator for later use.
[0100] (4) Preparation of silver nitrate-stained silica gel: Accurately weigh analytically pure silver nitrate in a volumetric flask, dissolve it with distilled water and c...
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Abstract
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