Client: A sugar refinery in South Africa
Application: Aeration tubes for syrup flotation clarifiers
Industry: Sugar

Overview

In sugar refining, syrup clarification quality directly affects final sugar purity and market grade. Clarifiers must perform consistently across changing throughput rates to avoid quality drift.

At this refinery, clarification performance was acceptable at low flow rates. However, when throughput increased, clarified syrup quality deteriorated, and purity targets were missed.

This exposed aeration as a system-level risk rather than a localised component issue. Bubble size and distribution inside the clarifier directly govern contaminant removal efficiency.

ActionLaser worked with the refinery on a solution that;

  • Restored clarification performance at full production rates.
  • Improved bubble distribution without redesigning the clarifier.
  • Delivered a fast, low-intervention upgrade path.

The Challenge

The refinery experienced poor clarification performance at full production rates.
While the low-throughput operation met specifications, the high-throughput operation did not.

The root cause was traced to aeration performance inside the syrup flotation clarifier.
Existing aeration tubes used mechanically drilled holes of approximately 1.5 mm.

These large holes produced coarse bubbles with limited surface area for mass transfer.
As throughput increased, contaminant removal efficiency dropped below acceptable levels.

The refinery required finer, more effective aeration without modifying air supply or vessel design.

The ActionLaser Solution

ActionLaser was engaged based on its proven experience in laser-drilling fine holes in sugar-industry tubing. This included prior applications such as vacuum pan Jigger Tubes.

Replacement aeration tubes were manufactured with 200-micron laser-drilled holes. An open area was set at approximately 2 per cent to balance airflow and bubble formation.

The tubes were produced at a small overall diameter to suit the existing clarifier. Installation required only a tube swap, with no changes to compressed air supply or vessel internals.

Results in Operation

Clarification performance improved immediately after installation. Finer bubbles increased mass transfer efficiency within the flotation clarifier.

The refinery achieved effective contaminant removal at full production rates. Clarified syrup consistently met the highest sugar purity specifications.

Penalty pricing linked to off-spec sugar was eliminated. The upgrade was completed quickly and without extended downtime.

Why It Worked

Laser drilling enabled precise control of aeration hole size at 200 microns.
This produced significantly finer bubbles than mechanically drilled alternatives.

Increased gas–liquid surface area improved flotation efficiency at high throughput.
Consistent hole geometry delivered a predictable aeration behaviour across operating conditions.

Because the solution addressed bubble formation directly, no system redesign was required.

Long-Term Value

The refinery regained full production capability without compromising sugar quality.
Clarification became stable across the entire operating range.

The solution avoided capital expenditure on redesigning or expanding the clarifier.
Aeration performance was improved through a targeted, low-risk upgrade.

By removing a throughput-related quality bottleneck, the refinery protected revenue and operational confidence.

Key Takeaways

Restored full-rate clarification

Fine bubble aeration maintained syrup clarity at maximum throughput

200 micron laser-drilled holes

Delivered higher mass transfer efficiency than 1.5mm mechanical drilling

Direct replacement upgrade

Installed without changes to air supply or clarifier design

Improved sugar quality compliance

Eliminated penalty pricing caused by off-spec refined sugar

Meet the Author

ActionLaser Team
Engineering, Manufacturing & Filtration Specialists

This article was written by the ActionLaser team, a group of engineers, laser specialists, and manufacturing professionals focused on precision stainless steel filtration. The team works closely across design, production, and customer support to ensure filtration behaves predictably in demanding applications. Their work is grounded in real operating conditions, careful validation, and a shared responsibility for long-term performance.

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Our chrome coated stainless-steel laser-drilled filtration screens are engineered to improve yield, efficiency, and reliability in demanding industrial environments where performance matters most. For customers seeking new, leading-edge screen specifications, ActionLaser works closely with process engineers, OEMs, and production facilities to develop solutions tailored to your specific challenges. This collaborative, application-driven approach delivers longer screen life, reduced maintenance requirements, and measurable productivity gains across your real-world operating conditions.

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Sugar Processing

High-strength, long-life centrifuge and filtration screens that maximise sugar yield, reduce vibration, and improve energy efficiency for both cane and beet operations.

Plastics Recycling

High-precision laser drilled MeltFilter discs designed for continuous recycling. Handles contamination, reduces change-outs and supports stable, high-throughput performance.

Dairy Automation

Hygienic laser drilled stainless steel screens purpose-built for robotic milking and dairy processing. Precision apertures support consistent filtration, faster cleaning and improved uptime.

Food & Beverage

Precision laser drilled stainless steel screens for consistent, hygienic food and beverage processing. Designed for fine fibres and delicate ingredients with faster, easier cleaning.

Industrial Processing

High-precision laser drilled stainless steel screens designed for complex filtration, separation and flow control. Built for strength, consistency and chemical resistance.

Pharma and Biotech

Ultra clean laser drilled stainless steel screens for sensitive pharmaceutical and biotech applications. Precise apertures support purity, consistency and contamination control.

Water and Environmental

Robust laser drilled stainless steel screens for water treatment, desalination and environmental filtration. Designed to resist fouling and wear while supporting longer operating cycles.

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Frequently Asked Questions

Why is aperture stability important in syrup clarification?
Small geometry changes can affect colour, clarity, and downstream processing.
What causes clarification performance to drift over time?
Screen distortion, wear, and inconsistent apertures alter separation behaviour.
How do laser-drilled screens improve consistency?
They maintain defined apertures under continuous operation.
Can clarification screens be tailored to specific syrups?
Yes. Aperture size and open area are application-specific.
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