AD & Biogas Show
Packo High Shear
Pump Series
SFP2 & SFP3
T
he new, efficient high shear
mixing method developed
by Packo is based on the
proven EHEDG certified
pump series FP2 with open impeller
and series FP3 with closed impeller.
The Packo shear mixer pump is mainly
used for inline mixing, homogenisation
and dispergation applications.
The shear is generated between the
rotor and an innovative and optimized
perforated stator (patent pending). The
shear can be optimized and increased
by raising the speed of rotation. Shear
rates up to 40.000 s-1 can be achieved
at a maximum speed of 3600 rpm!
The final goal is to achieve a
homogeneous solution of two liquids
with high difference in viscosity and/
or density and to obtain a particle size
reduction for emulsions and particles.
The smooth operational performance
achieved by this conforms with the
unique precision and quality you
have come to expect from all Packo
components.
Thanks to the special designed stator
(patent pending) together with small
clearance between rotor and stator
an important shear will be generated
resulting in a significant particle size
reduction (from 1.4 up to 2 µm)! A
smaller particle size will result in a
more stable final product.
• Monobloc execution, easy
installation.
• Easy to clean (CIP and SIP).
• ‘Self’ pumping.
• High mechanical & hydraulic shear.
• Rapid solid dissolving.
• Particle size reduction leading to a
stable product.
For complete mixing and homogenizing
units, please contact Packo Pumps.
The benefits of the Packo High Shear
Pump Series SFP2 & SFP3 include:
• High efficient so less energy cost!
• Use of std. components, easy
maintenance.
• Several seal configurations available.
• Atex available
We optimize your ow
Tel: +32 51 51 92 80
Email: [email protected]
www.packopumps.com
Our Contribution
to Your Carbon Benefit
We optimize your flow
Visit us at
ADBA Biogas
Watch the Packo Pumps video.
Stand D601
Birmingham, UK
6-7 July 2016
Packo Pumps Belgium
Tel. +32 51 51 92 80 • [email protected]
www.packopumps.com
Issue 21 PECM
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