TEXTILE POTS
Root Pouch 0.450L
Root Pouch is made of 100% biodegradable textiles.
Suitable for outdoor cultivation, with limited water and nutrient distribution
substances and does not restrict root development.
textile pot Root Pouch 1L
Root Pouch plant pots are more breathable and water-efficient, encouraging a more fibrous, dense root structure and preventing roots from circling.
They also provide superior insulation, protecting plants against winter cold and summer heat.
- Better than black plastic
- Boosts plant growth and yields
- Fabric allows roots to breath
- Prevents roots from circling
- Pots are washable and last for multiple seasons
- Keeps plants warmer in winter & cooler in summer
- Pot allows plant to be placed outside quicker
- Saves up to a week off vegetative growth cycle
- Can be used with drip systems, overheads & hydroponic flood trays
- Reusable and washable
textile pot Root Pouch 6L
Root Pouch plant pots are more breathable and water-efficient, encouraging a more fibrous, dense root structure and preventing roots from circling.
They also provide superior insulation, protecting plants against winter cold and summer heat.
- Better than black plastic
- Boosts plant growth and yields
- Fabric allows roots to breath
- Prevents roots from circling
- Pots are washable and last for multiple seasons
- Keeps plants warmer in winter & cooler in summer
- Pot allows plant to be placed outside quicker
- Saves up to a week off vegetative growth cycle
- Can be used with drip systems, overheads & hydroponic flood trays
- Reusable and washable
TexPot 1L White
Made from recyclable polypropylene geotextile, TEXPOT pots improve the oxygen supply to the roots and provide optimal drainage of excess water from the substrate.
TexPot 3L White
Made from recyclable polypropylene geotextile, TEXPOT pots improve the oxygen supply to the roots and provide optimal drainage of excess water from the substrate.
TexPot 7L White
Made from recyclable polypropylene geotextile, TEXPOT pots improve the oxygen supply to the roots and provide optimal drainage of excess water from the substrate.