Product Description
PLRP-S 1000Å, 50 µm, bulk media, 1 kg. Fully porous PS/DVB reversed-phase particle support that is stable at elevated temperatures and a wide pH range(1-14). Available in wide range of particle and pore sizes for targeted applications
Specifications:
Brand: PLRP-S
Hardware: Bulk Media
LC Platform: Bulk Media
Maximum Temperature: 200 °C
Part Number Application Domain: Biopharma
Part Number Application: PeptidesPreparative HPLC Columns & Bulk MediaProteins
Particle Size: 50 µm
Particle Type: Fully Porous
Phase: DVB
Pore Size: 1000 Å
Separation Mode: Reversed Phase
Technique: LCLC & LC/MS
UNSPSC Code: 41115709
Weight: 1 kg
pH Range: 1-14
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This high-performance bulk chromatography media is engineered with a controlled pore size of 1000 angstroms and a particle size of 50 micrometers, making it ideal for the purification and separation of biomolecules and synthetic polymers. Manufactured from highly cross-linked polystyrene-divinylbenzene, this media provides exceptional chemical and thermal stability, supporting a wide range of mobile phase compositions and pH conditions. The large pore size ensures efficient mass transfer and recovery of large biomolecules such as proteins, peptides, oligonucleotides, and other high molecular weight species.
Suited for use in both preparative columns and process-scale purification, this media is commonly utilized in biopharmaceutical research, industrial-scale bioseparations, and method development in pharmaceutical laboratories. It delivers high loading capacity and robust mechanical strength, ensuring reliable performance in automated chromatography systems.
Compatible with a variety of Agilent preparative and process column hardware, as well as standard low- and medium-pressure chromatography systems from leading manufacturers, this bulk media enables both custom column packing and large-scale purification workflows. It integrates seamlessly with related size-exclusion and reversed-phase solutions, supporting a cohesive approach to biomolecule purification, analysis, and downstream processing in research and production environments.
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Collaboration
Tony Tang
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