[Hawach Scientific] PAH HPLC Column
SLHPAH321100 | PAH, 3μm, 120Å, 2.1x100mm | 1 |
SLHPAH321150 | PAH, 3μm, 120Å, 2.1x150mm | 1 |
SLHPAH346150 | PAH, 3μm, 120Å, 4.6x150mm | 1 |
SLHPAH346200 | PAH, 3μm, 120Å, 4.6x200mm | 1 |
SLHPAH346250 | PAH, 3μm, 120Å, 4.6x250mm | 1 |
SLHPAH546150 | PAH, 5μm, 120Å, 4.6x150mm | 1 |
SLHPAH546200 | PAH, 5μm, 120Å, 4.6x200mm | 1 |
SLHPAH546250 | PAH, 5μm, 120Å, 4.6x250mm | 1 |
SLHPAH1046250 | PAH, 10μm, 120Å, 4.6x250mm | 1 |
Advantages of PAH HPLC Chromatographic Column
- Excellent end cover technology;
- The specific silica gel matrix treatment technology is used;
- High pure white carbon black in 100000 stage clean room;
- Average sample size and pore size increase well flow;
- Perfect peak and peak volume;
- Good stability of the bonding phase;
- Super inertia and high durability;
- Guarantee reproducibility;
- Excellent separation rate and pressure;
- Reducing the effect of silicon on raw materials;
- Compounds with strong interaction with silica gel have an excellent separation effect;
- The range of pH values is wide and the service life is long;
- Use with most HPLC instruments.
Features
- High carbon content, strong retention of weak polarity;
- Strong plane and solid structure selectivity;
- The super high purity all-porous silica gel is the matrix;
- For the detection of polycyclic aromatic hydrocarbons;
- Can be used for the EPA 610 method;
- Good repeatability and stability.
Bonded Phase | USP No. | Particle Size | Pore Size | Surface Area(m2) | Carbon Loading | pH range | End-capped |
PAH | / | 5 μm | 120Å | 320 | 22% | 1.5-10.0 | Yes |
Applications
- Applicable to the U.S. EPA 610 method;
- Excellent separation performance of PAHs chromatography.
Hawach Scientific PAH Column is designed according to the American EPA method 610 standards designed for the detection of polycyclic aromatic hydrocarbons. Unique high-density bonding process, larger carbon load. Excellent chromatographic separation performance for PAHs, such as the analysis of these potential carcinogenic compounds in water, air, soil, and food, with the best peak shape of PAHs.
Based on the double-layer silica gel surface treatment technology, the(polycyclic aromatic hydrocarbon) PAH HPLC column adopts an advanced multi-layer bonding method. Precise control of the stereostructure of the reversed-phase C18 bonded on the surface of silica gel makes it have special selectivity for polycyclic aromatic hydrocarbons, and can achieve baseline separation of various polycyclic aromatic hydrocarbon stereoisomers.
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