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About 30 years ago MACHEREY‑NAGEL designed and introduced CHROMABOND SPE cartridges containing silica-based adsorbents.

SPE is a form of digital (step-wise) chromatography designed to extract, partition, and / or adsorb one or more components from a liquid phase (sample) onto a stationary phase (adsorbent or resin). An adsorbed substance can be removed from the adsorbent by stepwise increase of elution strength of the eluent (step gradient technique).

SPE extends a chromatographic system’s lifetime, improves qualitative and quantitative analysis, and the demand placed on an analytical instrument is considerably lessened.


Catalog No. Product Net Price
MN731849 SPE cartridges, CHROMAFIX PA, Small Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PA
  • Mode
  • Normal phase (NP)
  • Base material
  • Polyamide
  • Surface chemistry
  • Polyamide (PA)
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 30 mg
  • Recommended application(s)
  • Flavonoids, PAH
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 40–80 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • Not available or not applicable
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731851 SPE cartridges, CHROMAFIX PA, Large Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PA
  • Mode
  • Normal phase (NP)
  • Base material
  • Polyamide
  • Surface chemistry
  • Polyamide (PA)
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 260 mg
  • Recommended application(s)
  • Flavonoids, PAHs
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 40–80 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • Not available or not applicable
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731852 SPE cartridges, CHROMAFIX Dry (Na₂SO₄), Small Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • Dry
  • Mode
  • Special application or diverse
  • Base material
  • Sodium sulfate
  • Surface chemistry
  • Anhydrous high-purity sodium sulfate (Na₂SO₄)
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 360 mg
  • Recommended application(s)
  • Forms Glauber’s salt with traces of water, Removal of traces of water from organic solutions
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • Diverse
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • Not available or not applicable
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731853 SPE cartridges, CHROMAFIX Dry (Na₂SO₄), Medium Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • Dry
  • Mode
  • Special application or diverse
  • Base material
  • Sodium sulfate
  • Surface chemistry
  • Anhydrous high-purity sodium sulfate (Na₂SO₄)
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 760 mg
  • Recommended application(s)
  • Forms Glauber’s salt with traces of water, Removal of traces of water from organic solutions
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • Diverse
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • Not available or not applicable
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731854 SPE cartridges, CHROMAFIX Dry (Na₂SO₄), Large Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • Dry
  • Mode
  • Special application or diverse
  • Base material
  • Sodium sulfate
  • Surface chemistry
  • Anhydrous high-purity sodium sulfate (Na₂SO₄)
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 2000 mg
  • Recommended application(s)
  • Forms Glauber’s salt with traces of water, Removal of traces of water from organic solutions
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • Diverse
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • Not available or not applicable
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731860 SPE cartridges, CHROMAFIX PS-OH⁻, Medium Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PS-OH⁻
  • Mode
  • Ion exchange (IEX)
  • Base material
  • PS/DVB copolymer
  • Surface chemistry
  • Polystyrene-divinylbenzene copolymer (PS/DVB), strong anion exchanger, OH⁻ form
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 220 mg
  • Recommended application(s)
  • Increasing the pH value in acidic samples, Removal or concentration of anions from water
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 100 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • 1.0–14.0
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731861 SPE cartridges, CHROMAFIX PS-H⁺, Medium Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PS-H⁺
  • Mode
  • Ion exchange (IEX)
  • Base material
  • PS/DVB copolymer
  • Surface chemistry
  • Polystyrene-divinylbenzene copolymer (PS/DVB), strong cation exchanger, H⁺ form
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 265 mg
  • Recommended application(s)
  • Decreasing the pH value of basic samples, Removal or concentration of cations from water
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 100 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • 1.0–14.0
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731862 SPE cartridges, CHROMAFIX PS-OH⁻, Large Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PS-OH⁻
  • Mode
  • Ion exchange (IEX)
  • Base material
  • PS/DVB copolymer
  • Surface chemistry
  • Polystyrene-divinylbenzene copolymer (PS/DVB), strong anion exchanger, OH⁻ form
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 510 mg
  • Recommended application(s)
  • Increasing the pH value in acidic samples, Removal or concentration of anions from water
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 100 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • 1.0–14.0
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731863 SPE cartridges, CHROMAFIX PS-H⁺, Large Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PS-H⁺
  • Mode
  • Ion exchange (IEX)
  • Base material
  • PS/DVB copolymer
  • Surface chemistry
  • Polystyrene-divinylbenzene copolymer (PS/DVB), strong cation exchanger, H⁺ form
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 670 mg
  • Recommended application(s)
  • Decreasing the pH value of basic samples, Removal or concentration of cations from water
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 100 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • 1.0–14.0
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT
MN731865 SPE cartridges, CHROMAFIX PS-Ag⁺, Medium Special offer 
Add to Cart
  • Hazardous material
  • No
  • Method
  • Solid phase extraction (SPE)
  • Brand
  • CHROMAFIX
  • Phase
  • PS-Ag⁺
  • Mode
  • Ion exchange (IEX)
  • Base material
  • PS/DVB copolymer
  • Surface chemistry
  • Polystyrene-divinylbenzene copolymer (PS/DVB), strong cation exchanger, Ag⁺ form
  • Column type
  • SPE cartridge
  • Hardware
  • Polypropylene (PP) cartridges with polyethylene (PE) filter elements
  • Column shape
  • Tubular syringe-shaped cartridge with Luer tip inlet and outlet
  • Filling quantity
  • 250 mg
  • Recommended application(s)
  • Bromate, Bromide, Chloride, Inorganic anions, Nitrate, Removal of halide ions in water
  • Particle type
  • Fully porous particles (FPP)
  • Particle size
  • 100 µm
  • Particle shape
  • Irregular
  • Specific surface according to BET
  • Not available or proprietary
  • pH stability
  • 1.0–14.0
  • Filter element material
  • Polyethylene (PE)
  • Storage temperature
  • RT

Overview

Main steps of the SPE procedure

1) Conditioning

Conditioning of the adsorbent is necessary in order to ensure reproducible interaction with the analyte. Conditioning, also called solvation, results in a wetting of the adsorbent and thus produces an environment, which is suitable for adsorption of the analyte. Nonpolar adsorbents are usually conditioned with 2–3 column volumes of a solvent, which is miscible with water (methanol, THF, 2-propanol etc.), followed by the solvent in which the analyte is dissolved (pure matrix, e.g., water, buffer). Polar adsorbents are conditioned with nonpolar solvents. After the conditioning step the adsorbent bed must not run dry, because otherwise solvation is destroyed (deconditioning).


2) Sample application (adsorption)

Sample application can be performed with positive or negative pressure with a flow rate of ~3 mL/min. Sample volumes vary from a few mL up to liters.


3) Washing

Washing of the adsorbent is usually achieved with a special wash solution; however, in some cases it may not be necessary. If the polarity difference between wash solution and eluent is very large, or if both are not miscible, drying of the adsorbent bed after washing is recommended to improve elution and recovery.


4) Elution

Elution with a suitable eluent should not be too fast. The elution speed depends on the column or cartridge dimension and the quantity of adsorbent (about 1 mL/min).


Since analytes can either be adsorbed on the SPE packing material or directly flown through while the interfering substances are retained, two general separation procedures are possible – both cases are shown in the figure below.



Resources