Industrial equipment

The system consists of a double plunger infusion pump, a mixer, a sample loading pump, a UV/VIS detector and a manual injector, all of which are optional according to actual needs. The variable pump flow rate range guarantees flow rate errors of ±1% to ±1.5% at 10 mL to 3 L infusion volumes under pressure backup/no pressure conditions.
Dynamic Axial Compression, or DAC for short, is recognized as a technique that delivers good separation results in column chromatography at various scales and is the preferred packing technique in industrial preparative chromatography today. When users need to pack a preparative column with an inner diameter of more than 100 mm, the traditional axial compression techniques, such as the "floating piston technique", are not able to meet the high separation requirements. In this case, dynamic axial compression shall be used. Dynamic axial compression columns use hydraulic jacks to drive the column sealing piston to maintain a constant column bed pressure. It is safe and easy to operate and is unlikely to cause leakage and contamination.
It is an integrated preparative liquid chromatography system, including an infusion pump, detector, fraction collection and control system, among which the infusion pumps with different flow rates are available for actual demand. The system can be designed to be explosion-proof/non-explosion-proof according to the safety level of the workshop and the explosion-proof grade is customized.
Analog moving bed chromatography (SMBC) is a high-efficiency, continuous chromatographic separation process, which can separate binary or pseudo-binary mixtures into two groups of high-purity monomers or one group of high-purity monomers and one group of mixtures, which is a multi-column continuous separation chromatography system.
This product has made two improvements on the basis of the traditional spring columns commonly used in laboratory: Firstly, DAC is adopted to ensure fast, even and dense packing with adjustable packing pressure between 0.5-20 MPa. Secondly, column efficiency is improved by forced partition of liquid flow.

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