DURAN 211166308 Beaker — 2000 mL Tall-Form
The DURAN 211166308 is a 2000 mL tall-form (high-form, Berzelius style) beaker constructed from borosilicate glass 3.3, offering excellent chemical resistance and low thermal expansion. With its tall, cylindrical profile, this beaker provides greater height relative to diameter, making it suitable for reducing splashes, accommodating taller stirring rods, and handling larger liquid volumes safely.
The beaker includes an integrated spout for clean liquid transfer, approximate printed graduations for volume estimation, and a fired-on white ceramic labelling field for permanent sample identification. Its uniform wall thickness ensures consistent heat distribution during heating applications, minimizing stress points and the risk of cracking.
Complying with ISO 3819 and DIN 12331 standards, the DURAN 211166308 is fully autoclavable (~121 °C), making it a reliable choice for laboratory and industrial environments that require safe sterilization and repeated use.
Specifications
Catalogue Number: 211166308
Nominal Capacity: 2000 mL
Form: Tall-Form (High-Form / Berzelius style)
Material: Borosilicate Glass 3.3
Outer Diameter: ~120 mm
Height: ~240 mm
Spout: Yes, integrated pouring lip
Graduations: Approximate printed scale (not for precision volumetric use)
Labelling Field: Fired-on white ceramic field
Wall Thickness: Uniform, suitable for heating
Standards: ISO 3819 / DIN 12331
Autoclavable: Yes
Applications
Handling, heating, and mixing of large liquid volumes
Reagent preparation for research, teaching, and industrial laboratories
Suitable for processes requiring deep liquid levels, reducing splashing during stirring
Widely used in quality control, R&D, and pilot-scale labs
Limitations
Graduations are approximate — not intended for tasks requiring precise volumetric accuracy
Large volume and tall geometry make it less stable than low-form beakers; handle with care when full or hot
Although borosilicate glass has excellent thermal resistance, avoid sudden extreme temperature changes to prevent thermal shock
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