Visit KMA
at Stand H18-B215!
Visit KMA
at Stand H18-B215!
We're excited to be exhibiting at ITMA 2023, Milan, Italy.
Register online to enjoy preferential rates!
About KMA:
KMA offers tailor-made solutions for exhaust air purification and heat recovery on stenter frames. The energy-saving KMA exhaust air filters pursue two goals: Clean air in textile finishing while at the same time reducing energy consumption.
We combine environmental protection and economic efficiency.
The exhaust air on stenter frames is significantly contaminated with dusts and oil particles, but also contains valuable waste heat from the finishing process. With more than 60 years of business experience, KMA is a leading expert in exhaust air purification with simultaneous heat recovery. The proven KMA ULTRAVENT® system combines highly effective electrostatic precipitators with powerful heat exchangers. This innovative filter technology offers environmental protection on several levels: In addition to reducing CO2 emissions, significantly less process oil is also released into the environment. KMA filters around 3,500 kg of oil from the exhaust air per stenter frame per year and thus reduces the environmental impact. The tailor-made filter solutions are suitable for all processes in textile finishing on stenter frames for example heat treatment, wet equipment and coating.
KMA ULTRAVENT System
KMA ULTRAVENT® systems are available in three sizes with a filter exhaust air capacity of 15,000, 20,000 and 30,000 m3/h. In addition to the regular sizes, we also offer our customers individual, tailor-made solutions for the respective exhaust air situation. The modular system enables precise design with regard to waste heat utilisation. The KMA exhaust air filters are basically equipped with a heat exchanger for heat recovery, an electrostatic precipitator for particle separation and an automatic washing system for cleaning these modules. Through a crossflow and an air-to-water heat exchanger, the recovered process heat can be used for both air and water heating. As a result, the energy consumption of the stenter frame is significantly reduced, the operator saves large amounts of energy costs and CO2 emissions are reduced. The effectiveness of the combination of supply air and water heating is unmatched on the market.
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