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TABLE OF CONTENTS - BGB Analytik AG

TABLE OF CONTENTS - BGB Analytik AG

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Agilent Prep LC Columns<br />

• High loadability for maximum sample purification<br />

• Easy scalability from 4.6 mm ID up to 50 mm ID for rapid method development<br />

• High throughput 21.2 mm ID cartridges for fast purification<br />

• Exceptional column stability and loadability up to pH 10<br />

Agilent Prep LC columns are designed for high loadability to purify milligram to gram<br />

quantities of products. Preparative sized columns are available in 21.2, 30, and 50 mm<br />

internal diameters with lengths ranging from 50-250 mm. Columns are available in 5 and<br />

10 µm particle sizes with very high efficiency in every dimension. These column choices<br />

accommodate almost every preparative sample.<br />

Agilent Prep 21.2 mm ID columns are available with Agilent’s Preparative Cartridge Hardware.<br />

This reliable cartridge hardware makes it simple to use columns with different lengths to<br />

increase sample load. Guard columns are easily integrated onto these columns providing<br />

superior protection of the analysis column. Analytical sized 4.6 mm ID scalar columns are<br />

available for method development and optimization prior to scaling up to larger columns. Bulk<br />

material is also available.<br />

Agilent Prep columns are available in a C18 bonded phase suitable for purification of a wide<br />

variety of non-polar and polar compounds. Unbonded silica columns are also available.<br />

Column Specifications<br />

Bonded<br />

Phase Pore Size<br />

Surface<br />

Area<br />

www.agilent.com/chem/supplies<br />

Temp.<br />

Limits pH Range Endcapped<br />

Agilent Prep<br />

Carbon<br />

Load<br />

C18 100Å 400 m2/g 60°C* 2.0-10.0 Single 24%<br />

Silica 100Å 400 m2/g ** 1.0-8.0 N/A N/A<br />

Specifications represent typical values only.<br />

*Temperature limits are 60°C up to pH 8, 40°C from pH 8-10.<br />

**Temperature limits for bare silica are determined by the pH of the mobile phase.<br />

LC and LC/MS<br />

663

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