QUECHUA
Ref.
8844283
5045360
Kids’ Hiking Trousers NH100 Age 7-15 - Khaki
€16.50
Tax included
Store Availability
Store Availability
Designed for young adventurers, these hiking trousers are ideal for outdoor excursions. The elasticated waistband makes them easy to put on.
BENEFITS
Lightweight
Weight of the trousers: 212 g in size 7/8 yearsFreedom of movement
StretchQuick drying
The main fabric contains polyester to wick away moisturePockets
4 pockets | 1 thigh pocket | 2 hand pockets | 1 rear pocketcomposition
composition
Main fabric: 77.0% Cotton, 23.0% Polyester
Tips for storage and maintenance
ANY TYPE OF IRONING ALLOWED.
MAXIMUM WASH TEMPERATURE OF 30°C. VERY MODERATE TREATMENT.
DO NOT TUMBLE DRY.
IRONING AT A MAXIMUM IRON SOLEPLATE TEMPERATURE OF 200°C.
Storage tips
Store on a hanger or folded in a clean and dry place.
TESTS AND WARRANTY
Test product
All our clothes are tested in the field by target users. We conduct our long-term field tests with kids from the Mont Blanc region to continually develop and improve our products.
Agree by
To meet your requirements, Quechua products are tested in the mountains in conditions you will encounter during your hikes.
Sarah, our Field Test Engineer, as well as a panel of child testers, test the products throughout their development until they’re offered for sale.
Parts guarantee
2 years
Ecodesign approach
With ecodesign, we reduce the environmental impact of our products.
Analysing 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.
Ecodesign actions on this product
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Material
Organically grown cotton
Product made from 77% organic cotton
Using organically grown cotton rather than conventional cotton reduces the CO2 emissions linked to the material by at least 2.4%.
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Material
Recycled polyester
Product made from 23% recycled polyester
Using recycled polyester rather than conventional polyester reduces the CO2 emissions linked to the material by at least 16%.