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Hard Tissue Homogenizing Mix 2.8 mm Ceramic (30 mL Tubes) (50/pk)

Omni Bead Ruptor Elite bead mill homogenizer compatible bead beating tubes are pre-filled with an optimized amount of lysing matrix to provide efficient and robust sample homogenates.

Product features:

  • 30 mL polypropylene screw cap tubes pre-filled with 2.8 mm ceramic beads or 2.8 mm ceramic beads with 1/4'' ceramic cylinder
  • Certification: RNase & DNase Free, Microbial DNA Free (19-6358D)

For research use only. Not for use in diagnostic procedures.

Product Variants
Quantity: 50 (DNase RNase Free)
Accreditations
RNase and DNase Free
Part #:
19-6358
Quantity: 50 (Microbial DNA Free)
Accreditations
RNase DNase Free and Microbial DNA Free
Part #:
19-6358D
Quantity: 50
Accreditations
None
Part #:
19-6358Z
Feature Specification
Application Tough and fibrous plant material, hard tissues, seeds and feed
Bead Type or Material Ceramic
Diameter 30.0 mm
Material Polypropylene Tube and Polyethylene Cap
Sample Volume 2 mL to 20 mL
Volume 30.0 mL
Length 80.0 mm
Maximum G Force 5,000 x g
Feature Specification
Application Tough and fibrous plant material, hard tissues, seeds and feed
Bead Type or Material Ceramic
Diameter 30.0 mm
Material Polypropylene Tube and Polyethylene Cap
Sample Volume 2 mL to 20 mL
Volume 30.0 mL
Length 80.0 mm
Maximum G Force 5,000 x g

Overview

  • Hard tissue or hard tissue impact homogenizing mix (30 mL Tubes)
  • Recommended for: tough and fibrous plant material, hard tissues, seeds and feed

Specifications

Diameter
30.0 mm
Length
80.0 mm
Volume
30.0 mL
Accreditations
RNase and DNase Free
Application
Tough and fibrous plant material, hard tissues, seeds and feed
Bead Type or Material
Ceramic
Material
Polypropylene Tube and Polyethylene Cap
Maximum G Force
5,000 x g
Quantity
50 (DNase RNase Free)
Sample Volume
2 mL to 20 mL
Temperature Range
-80 to 121 °C

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Application Note Icon
Application Note
Bead mill-based plant protein extraction efficiency is not dependent upon starting sample quantity

Bead mill homogenizers enable rapid and efficient lysis of biological materials, including plants via high-impact forces generated...

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