Plastic Metal Pall Ring Media For Cooling Tower Filler

Plastic Metal Pall Ring Media For Cooling Tower Filler

Plastic Metal Pall Ring Media for Cooling Tower Filler
it was invented by German BASF, the first generation Plastic Random packing. Compared with the Raschig ring, the most important improvement is the increase of two rows of inward ligules.
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Description
Technical Parameters
 
 
 
 
[ Pall Ring Media ]

Plastic & Metal Pall Ring Media for Cooling Tower Filler and Mass Transfer

Juntai Pall Ring random packing - invented by German BASF as the first-generation plastic random packing - adds two rows of inward ligules over the Raschig ring for high void ratio, low pressure drop and uniform gas-liquid distribution in cooling towers, absorption columns and scrubbers.

BASF
invented first-gen packing
2 rows
inward ligules
Low
pressure drop
High
void ratio

Juntai plastic pall ring media for cooling tower filler

▬ Main product view

01  Why Operators Choose Pall Ring

Random packing decides how much of a tower does real work. If the packing drops pressure, floods early or channels gas and liquid unevenly, every downstream process pays for it in energy and yield. Juntai Pall Rings are engineered with two rows of inward ligules that cut pressure drop, boost void space and spread gas-liquid contact evenly across the bed.

 
 
 
 
2 rows
Inward Ligules
 
The signature BASF-derived improvement over Raschig rings - inward windows increase contact area, improve liquid retention and lower pressure drop.
 
 
 
 
Void
High Void Ratio
 
Pall rings occupy a smaller volume in the tower, leaving more space for the flow of gases and liquids and raising throughput.
 
 
 
 
Low
Pressure Drop
 
The design results in a low pressure drop across the packing, saving energy in tower operation.
 
 
 
 
Uniform
Gas-Liquid Distribution
 
The ring shape promotes uniform distribution of gas and liquid through the packing, improving mass transfer efficiency.

02  Technical Specifications

Parameter
Value
Origin / type
Invented by German BASF - first-generation plastic random packing
Key design
Two rows of inward ligules (improvement over the Raschig ring)
Void ratio
High - occupies less tower volume, more space for gas and liquid flow
Pressure drop
Low across the packing, saving energy
Distribution
Uniform gas-liquid distribution, improved mass transfer efficiency
Liquid retention
Improved by the unique geometry vs other random packing
Mechanical strength
High - robust and durable during installation and operation
Applications
Chemical treatment, wastewater treatment, air pollution control

Pall ring geometry with inward ligules

▬ Cross-section & grid layout

03  Pall Ring vs Other Random Packing

The table below compares Juntai Pall Rings with conventional Raschig rings and ceramic saddles on the factors that drive packed-column performance and operating cost.

Packing type
Design
Void ratio
Pressure drop
Typical duty
Juntai Pall Ring
Two rows of inward ligules
High
Low
Cooling tower, gas absorption, scrubbing
Raschig Ring
Plain cylinder, no windows
Moderate
Higher
Simple stripping / distillation
Ceramic Saddle
Saddle shape
Moderate
Medium
Acid / corrosive scrubbing

04  Pall Ring Design & Performance

Every Juntai Pall Ring shares the same BASF-derived geometry. What changes is how that geometry pays off in a real tower - contact area, flow, retention and energy.

BASF-Origin Random Packing
Invented by German BASF, the Pall Ring is the first-generation plastic random packing - the benchmark that modern tower fill is measured against.
Two Rows of Inward Ligules
Compared with the Raschig ring, the key improvement is two rows of inward ligules that increase contact area and liquid retention.
High Void Ratio & Low Pressure Drop
Pall rings occupy less tower volume and keep pressure drop low, saving fan and blower energy in every packed column.
Wide Versatility
Used across chemical treatment, wastewater treatment and air pollution control as cooling tower fill, scrubber and absorption column packing.

05  Application Scenarios

Cooling Tower Fill
Random-packed cooling tower beds that maximize air-water contact, improve heat rejection and cut fan energy.
Gas Absorption & Scrubbing
SO2, H2S, VOC and ammonia absorption towers where low pressure drop and high void ratio sustain gas throughput.
Wastewater Odor Control
Chemical scrubber and biofilter packing for odor and hydrogen-sulfide removal in municipal and industrial plants.
Distillation & Stripping
Random packing for fractionating columns and stripping units where uniform distribution raises separation efficiency.

Pall ring random packing in a cooling tower or scrubber application

▬ Typical field application

06  From Our Factory

Juntai factory production of pall ring media

▬ Production line

 
 
 
 
Get Expert Support for Your Packed Tower

From material and size selection to column fill-volume calculations, Juntai engineers can help you specify the right Pall Ring for your cooling tower, scrubber or absorption column. Request samples and technical data.

 

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