Paint Shop with EcoQPower Requires about 21% Less Energy
In a comprehensive life cycle analysis, the Fraunhofer Institute for Building Physics (IBP) studied the carbon footprint of two different paint shop concepts.
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Paint shops must become “greener” to help vehicle manufacturers feel certain about meeting their ambitious climate targets. In a comprehensive life cycle analysis, the Fraunhofer Institute for Building Physics (IBP) studied the carbon footprint of two different paint shop concepts. The result: Dürr’s paint shop with the EcoQPower system, which networks all energy flows to supply all process steps, reduces carbon emissions by 19.2% over its entire life cycle compared with paint shops without this system. This is mainly because of an energy consumption reduction of about 21% in the utilization phase, making it the first paint shop to comply with EU Taxonomy requirements.
Paint shops consume the most energy throughout the entire vehicle manufacturing process since applying paint and drying car bodies are energy-intensive. Consequently, modern paint shops’ carbon footprints are still significant despite technical progress.
“The EU wants to be climate neutral by 2050,” explains Jens Oliver Reiner, senior vice president sales in the Paint and Final Assembly division at Dürr. “We had this target in mind when we adopted a new strategy on the path to a carbon-neutral paint shop from an energy perspective. Instead of continuously increasing the energy efficiency of individual elements such as paint booths and ovens, as we did before, we developed the EcoQPower system, which considers all paint shop energy sources and network components, as well as energy flows.”
The new concept analyzes energy sources and energy sinks in operation, considering various operating states and historic climate data. Based on this analysis, the EcoQPower energy network systematically recovers energy in one place, which can then be reused elsewhere.
Sustainability is often promised, but these promises frequently turn out to be nothing more than greenwashing. Dürr partnered with the Fraunhofer Institute for Building Physics to prove that the first paint shop optimized with EcoQPower being built for a German vehicle manufacturer emits fewer greenhouse gases than a paint shop without the energy network system. The scientists analyzed the effects on the carbon footprint by simulating and calculating the values for two identical, all-electric factories in the same location and with the same performance data – one with and one without an EcoQPower system.
In keeping with the circular economy, the entire life cycle from paint shop production, including the transportation of materials to the utilization phase and the end of life, was analyzed. The Fraunhofer Institute study found that the EcoQPower system reduces the carbon footprint by 19.2% over this entire period. Since 91% of emissions are produced in the utilization phase, EcoQPower enables paint shop operators to run a more climate-friendly business. The investment also pays off in terms of sustainability. As a result, operators can reduce their energy costs by seven figures over the assumed utilization period of 15 years and 110,000 painted car bodies per year.
EcoQPower is based on the concept that each manufacturing area only receives the appropriate energy and temperature level it actually needs. In a standard paint shop, all process steps, such as pretreatment, the oven, and the paint booth, have been viewed and supplied as individual components until now. For example, excess energy from the drying process that could be applied elsewhere is released unused into the environment.
By considering the entire scope, the EcoQPower system delivers real benefits by integrating all waste heat sources, including those not previously used, and reuses energy at low temperatures. Heat pumps generate heating and cooling energy simultaneously, which is possible because Dürr’s experts measure each paint shop process step's heating and cooling requirements using proprietary software. With this knowledge, they leverage synergies from the processes and – in combination with resource-saving technology – enable economical energy use.
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