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Centrally controlled firing boosts energy efficiency

With the SIMATIC PCS 7, Raffinerie Tirlemontoise increases its energy efficiency from 85% to 98%.

Refining sugar beet into sugar costs energy. Lots of energy: several megawatts per hour. That is why Raffinerie Tirlemontoise is pushing hard for efficiency. With a brand new centrally controlled boiler room, it increased its energy efficiency from 85 to 98 per cent in one fell swoop.

Making sugar is evaporating water

Washing sugar beets, peeling them, cutting them into pieces, then extracting them with hot water so that the sugars dissolve into sugar juice, and then concentrating and crystallizing this juice.

This is how the Tiense Sugar Refinery has been making sugar for 190 years. The principles have remained the same, but the scale has grown. And the technology has improved.

“A sugar factory is a water factory,” says Benny Holemans, project manager Energy & Sustainability. “Sugar beet contains 14 to 18 per cent sugar depending on the season. The rest is dry matter, but mostly water. And we need to evaporate that water. That costs a lot of energy.”

Tiense Suiker - intro

The Raffinerie Tirlemontoise is working hard to use this energy as efficiently as possible. In 2023, the company built a new diffusion tower with higher efficiency and lower energy consumption than the old extraction systems. The juice is thickened with steam in the evaporators and cooking pans.

The entire evaporation installation is balanced and all condensate flows and heat surpluses are utilized to the maximum. An industrial heat pump extracts energy from a portion of low-calorific steam that was not reused.

Tiense Suiker - evaporation

From energy producer to battery for the grid

Despite all these efforts, energy remains a challenge. “We need to go green. For our planet, but also to control our costs. Currently, we produce 14 to 15 megawatts, mainly with gas. We ourselves consume about 13 megawatts of that, the rest we put on the grid. That is getting more expensive. Doing nothing would cost us tens of millions of euros over the next 15 years.”

“We also generate biomethane from beet waste, though it still falls far short of meeting our energy demand. So we need to electrify. But then comes the problem: we produce sugar from September to March, along with the beet harvest. These are precisely the dark months, when there is little solar energy available. So we had to take another efficiency leap.”

Additional challenge: a mix of energy sources. “Right now, we are an energy producer. With electrification, we are becoming an energy consumer. We want to consume as cheaply as possible, so the solution had to be flexible. During our production months, there is sometimes too little electricity, but sometimes too much, for example when there is too much wind. Then we are paid to use that energy. That way, we even become a battery for the grid.”

Tiense Suiker - energy

State-of-the-art gas, electricity and hydrogen boiler room

Scattered around the site were 3 boiler rooms, one of which was still running on coal until recently. Callens, Callensvyncke and Siemens built one central boiler room in eight months. “We worked with a small project group full of specialists, and it paid off.”

“We’ve been a fixture here since 1995,” adds Stein Monserez, Vertical Manager Food & Beverage at Siemens. “We know each other inside out; as a result, there are very short lines of communication.”

Tiense Suiker - Stein Monserez

About Raffinerie Tirlemontoise

Raffinerie Tirlemontoise has been producing sugar since 1836. The company is the market leader in Belgium, with around 600 employees spread across six sites in Belgium and the Netherlands. The Tienen plant covers 17 hectares.

Open communication was key in this project: as a result, there are very short lines of communication and this project went extremely smoothly.
Stein Monserez, Vertical Manager Food & Beverage, Siemens

“The boiler room is state-of-the-art,” beams Benny. “We installed energy-efficient hybrid low-NOx boilers fully controlled by SIMATIC PCS 7. By centralising everything and using completely new equipment, we went from 85% to 98% energy efficiency in one fell swoop. This results in direct annual savings of 5–10 per cent. With an energy bill of €13 million, that’s a pretty big deal.”

“We had been standardising on PCS 7 for some time. Now we can also fully control our boiler room from our central control centre. If at all necessary, as it basically runs autonomously. That means operators have to do a lot less walking around.”

Tiense Suiker - Benny Holemans
With this new installation, we reduced our water consumption by up to a third. A serious saving, which also benefits the environment.
Benny Holemans, Project Manager Energy & Sustainability, Raffinerie Tirlemontoise

“Furthermore, we save a lot on maintenance. Our old boiler rooms were no longer in tip-top shape. Leaking pipes, burner failures, etc.; crews often had to go out. That is all history. There are also less consumption costs: we no longer have to dispose of coal ash, for example. And by recycling, we have reduced our water consumption by up to a third. All serious savings, each of which will benefit the environment.”

“The boilers now run on natural gas, but soon they will also run on electricity. In the near future, a hydrogen pipeline will come near here; the boilers are also equipped for that. This way, we always choose the cheapest energy and give the grid a helping hand when there is surplus energy that distributors want to get rid of.”

The benefits in a nutshell

  • Energy efficiency from 85% to 98%
  • 5% to 10% savings on energy costs
  • Water consumption reduced to a third
  • Ready for flexibility with electricity and hydrogen
  • Savings on operators and maintenance costs

Ready for an energy-efficient future

“With this project, we started producing much more sustainably. And we are ready to do even better in the next 20 years. Our industrial heat pump has a coefficient of performance of 2.5–3 – that means it generates 3–4 times as much energy as you put in. With even newer techniques like mechanical vapour recompression, we are moving towards a COP of 6 to 7.”

Tiense Suiker - future

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