Durable & Weather Resistant
High resistance to weathering, UV exposure, and impact, suitable for both interior and exterior applications.
eCovering
Rome Travertine eCovering® flexible stone captures the timeless architectural essence of classical Roman travertine, featuring structured layered sedimentation, refined horizontal veining, and naturally distributed porous textures.
The surface conveys a sense of historical depth and architectural permanence, while maintaining a soft mineral transition that enhances material authenticity. It is especially suited for neoclassical, monumental, and modern heritage-inspired architectural spaces.
High resistance to weathering, UV exposure, and impact, suitable for both interior and exterior applications.
Ultra-thin and lightweight panels that can bend to fit curved and complex architectural surfaces without cracking.
Digitally replicates the texture of stone, wood, concrete, and other natural materials with high visual fidelity.
Meets Class A fire resistance standards, ensuring higher safety for architectural use.
Manufactured using Econiclay® technology with reduced carbon footprint and improved resource efficiency.
Can be directly applied using adhesive systems, significantly reducing installation time and labor cost compared to traditional stone.
Quantification of project value
Application over an area of ten thousand square meters
1,020kg vs 78.5kg
Equivalent sequestration according to Italian Ministry of Environment standards
from 64 euros/㎡ to 11 euros/㎡
On the general eCovering platform, customers can customize multifunctional eCovering surface materials as
needed:1.eCovering with Negative Oxygen Ion-Releasing function2.eCovering with Anti-Mold & Antiviral Surface function
Integrated with Nano-scale Negative Ion Release Technology, Redefining Architecture with Harmonious Health & Aesthetics
Case example: 1,000m³ eCovering with Negative Ion function
Carbon Reduction Breakthrough
Carbon Emission: 1.02 kgCO₂/m³ (98.6% lower than natural stone)
Smart Air Purification System
Negative Ion Generation: >49.7 billion ions/sec/m³ (Equivalent to air purification capacity of 4.2 Douglas fir trees per m²)
Formaldehyde Removal Efficiency: 23.5% higher than national standard
Durability: 84.1% long-term performance retention
Triple Eco-Benefits
Carbon Asset Visualization: Annual carbon reduction: 729.8 tons (= u00a543,058 carbon credit revenue @2025 price of u00a559/ton)
Healthy Breathing Model: Daily medical-level air purification capable for 91,000 people (WHO standard: 30m³/personu00b7day)
Low-Carbon Strategic Value: Emission offset equivalent to annual emissions of 309 gasoline vehicles (China VI standard: 2.36 tons/vehicleu00b7year)
The specially prepared ultrafine mineral clay powder possesses an extremely large specific surface area, enabling it to adsorb formaldehyde and organic compounds. During the manufacturing process, a non-toxic inorganic antimicrobial formaldehyde scavenger is added, featuring needle-like active centers with tip-effect. Unlike photocatalysts that require UV light excitation (which is rarely achievable under most home environment conditions), this technology utilizes incorporated variable-valence ions for activation, continuously generating and releasing reactive oxygen species. These species decompose formaldehyde, benzene, and other organic micro-molecules adsorbed by the ultrafine mineral clay into water and CO₂. Consequently, it can decompose harmful gases such as formaldehyde and benzene, and eliminate harmful bacteria around the clock for decades.
Antibacterial Performance: u226599% (Grade I)
Including Staphylococcus aureus, Escherichia coli, SARS-CoV-2
Antifungal Performance: Grade I
Including Aspergillus niger, Aspergillus terreus, Paecilomyces variotii, Penicillium funiculosum, Aureobasidium pullulans, Chaetomium globosum
Formaldehyde Removal Performance: u226593.6%
Long-term Durability of Removal Effect: u226588.8%
≤1200×600mm product back side
A clean installation method for projects that need fast replacement, flexible maintenance and minimal surface disruption.
A traditional bonding system for architectural envelope projects that require stable, permanent surface integration.
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