back to top
DREAM
'Dream Bloom Ret
 
 
DREAM
Dream Bloom Ret
COLOURS & STYLES
BACK
THE STORY
Dream tile collection plays on the textures of linen and nature-inspired accents. Oversize porcelain slabs provide a background for the delicate forms of woods and gardens. Like painted canvases, interpreted by the hand of an artist, they bring elegance to any interior, urging the beholder to touch and admire them.
Soft moods merge with the architecture like a fabric in these large, stunning wallpaper-effect panels with all the advantages of tiles - water-resistance, long life, and an easy-to-clean finish.
MATERIAL
Glazed Porcelain Tile
APPLICATION
Wall
COUNTRY OF ORIGIN
Italy
VARIATION
Shade Variation (V2)
AVAILABLE DIMENSIONS
(L)2780 × (W)1200 × (H)6.5 mm
FINISH
Matt
FINISH
Matt
you may also be interested in
Yorkwood
Yorkwood is the wood-effect collection inspired by the romantic and rural atmosphere of the English countryside. This collection evokes the noble work of wood that has lived and been lived.
Pacific
The Pacific tile collection is inspired by an elegant and timeless white marble. Pacific stands out for its graphic quality and is capable of achieving sophisticated rooms that give prominence to each project that is present.
Rivoli
The Rivoli porcelain tile collection by Equipe reworks the elegant hydraulic floors of palaces and historic buildings in a contemporary key, adapting them to the present day. Each of these tiles, meticulously crafted, tells a unique story and lends itself to multiple decorative solutions.
Antibacterial 60120
Element Ceramics' glazed porcelain tile collection showcases realistic marble veins and aesthetics in the 60x120cm format. The tile collection also features anti-bacterial properties for a safer and cleaner living environment.

Element Ceramics' antibacterial surface uses Zinc Ion technology. Zinc ions are an antimicrobial agent that can be used against various bacterial strains. A bio-safe material that is non-toxic to human (cells), Zinc ions can stop the growth of bacterial by interacting with the bacterial surface or entering inside the bacterial cells. This disrupts the bacterial enzyme system by displacing magnesium ions essential for the enzymatic activity of bacteria and subsequently, showing a significant bactericidal effect.