






Keezi Kids Toy Box Bookshelf Storage Bookcase Organiser Display Shelf
Foster a love of reading from an early age with a Keezi Kids Bookshelf. Our shelves come with everything you need to nurture your child's growing development and literacy skills. Each shelf is constructed from quality MDF board on a solid wood frame that will support your child's love of reading from 3 years and above. With two double-sided tiers, the bookshelves have ample space for books, magazines and reading materials of all sizes. Four smooth wheels (two of which are lockable) can help you move the shelf around or keep it in place. The shelves are the ideal height for young children and feature rounded edges for safety. With their whimsical tree-shaped design, your shelves will look perfectly in place in your playroom, bedroom, family room or even your local daycare or kindergarten. Easy to put together and simple to clean and maintain, our kid's bookshelves are the storage of dreams, fantasy and reality for every child.
Features
MDF board
Easy keep and reach
Double-sided storage design for larger storage space
4 universal wheels (with 2 lockable)
Solid wood frame
Smooth rounded edges
Easy assembly
Specifications:
Color: Grey,Pine
Material: MDF, Solid Wood
Overall Dimension: 52 x 46 x 59 cm (L x W x H)
Net Weight: 8.5 kg
Weight Capacity of Each Upper Shelf: 5 kg
Weight Capacity of Lower Shelf: 20 kg
Package Content
Kids Toy Box X1
Assembly Manual X1
This product comes with 1 year warranty
For the best chance of receiving your order before Christmas, we recommend placing orders by the dates below: Metro Areas NSW: 17/12/2025 ACT: 17/12/2025 VIC: 19/12/2025 QLD: 12/12/2025 SA: 17/12/2025 WA: 12/12/2025 TAS: 12/12/2025 NT: 8/12/2025 Regional Areas NSW: 10/12/2025 ACT: 10/12/2025 VIC: 12/12/2025 QLD: 8/12/2025 SA: 10/12/2025 WA: 5/12/2025 TAS: 5/12/2025 NT: 1/12/2025 Please note that delivery timeframes can vary depending on courier performance, location, and seasonal volumes. Ordering earlier than these dates may help reduce the risk of delays during peak periods.