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NABAIJI
Our design team created these swim shorts for kids discovering the joys of water in the pool or outdoors.
Kids' swim shorts for a bargain price.
ID 8575097
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Recommended for occasional use, up to 100 hours of activity.
Main fabric: 80.0% Polyamide, 20.0% Elastane. Very comfortable and soft with excellent stretch properties Chlorinated water can be harmful to swimsuits which are used repeatedly in the swimming pool. The elastane fibre that gives the material its stretch properties and therefore makes it comfortable is also fragile when in contact with chlorine.
A swimsuit should primarily favour comfort. It should enable you to move with ease. That is why it is important to choose the shape of your swimwear carefully. Swim shorts are ideal for those who prefer a shape that provides more coverage than trunks.
Not recommended for use on slides.
2 Years
Store in a dry place.
MAXIMUM WASH TEMPERATURE 60°C. MODERATE TREATMENT.
ANY BLEACHING AGENT ALLOWED.
DRYING IN TUMBLE DRYER POSSIBLE. LOW TEMPERATURE, MAXIMUM DRUM EXHAUST TEMPERATURE 60°C.
IRONING AT A MAXIMUM IRON SOLEPLATE TEMPERATURE OF 200°C.
PROFESSIONAL DRY CLEANING WITH TETRACHLOROETHYLENE AND ALL SOLVENTS LISTED OPPOSITE THE F SYMBOL. NORMAL TREATMENT.
Main fabric: 18.0% Elastane, 82.0% Polyamide
With ecodesign, we reduce the environmental impact of our products.
Analyzing the product's environmental footprint enabled us to identify the most impactful stages of its life cycle. Thanks to this approach, our design teams were able to develop this product while significantly reducing its environmental impact.
Product made from 16% undyed yarn
Using this finishing process enables us to reduce CO2 emissions linked to the production of undyed textiles by at least 53% compared to conventional dyeing.
Product made from 52% recycled polyamide
Using recycled polyamide rather than conventional polyamide reduces the CO2 emissions linked to the material by at least 38%.
Product made from 21% recycled polyester
Using recycled polyester rather than conventional polyester reduces the CO2 emissions linked to the material by at least 17%.