COUPON CODE : AUTUMNPROMO
Revive Cement. Restore Strength. Reduce Waste.
Nano-(Re)generation refers to the use of advanced nanomaterials and nanoscale processes to restore, heal, or enhance the microstructure and properties of deteriorated cementitious materials (e.g., cement and concrete). The aim is to regenerate material performance to enhance the mechanical integrity, durability, and service life of ageing infrastructure without full replacement.
Over time, traditional cement loses up to 20% of its strength within 3 months, and more than 50% after a year. With NANOARC’s QUANTREG® nanoadditives, cement and concrete retain their reactivity and structural strength for over 10 years, extending service life and reducing waste.
With 12 years in business so far, we’ve proven that our cement regeneration nanotechnology delivers measurable, lasting results.
Using NANOARC’s proprietary QUANTREG® nanotechnology, we help contractors, construction companies, and cement and concrete manufacturers save and recover value by eliminating the need to dispose of expired or deteriorated cement.
By regenerating and restoring cement, manufacturers can :
Extend the service life of existing materials
Cut costs and reduce CO₂ emissions from new cement production
Minimise waste management expenses from product loss
The results are instant — stronger mixes, faster project completion, and enhanced durability with a smaller environmental footprint.
Our Solutions
Cement Reactivation
Strength & Durability Reinforcement
Toxic Hexavalent Chromium (Cr VI) Remediation
Discover the power of QUANTREG® nano-regeneration technology — the future of sustainable cement performance enhancement.
We provide comprehensive sustainability consulting, offering on-site and remote guidance on implementing QUANTREG nano-regeneration technology that optimises material use, lower CO₂ emissions, and extends the lifecycle of cement and concrete assets.
Receive specialised support in the use and optimal dosage of our QUANTREG nanoadditives — typically around 0.001 wt% — to extend the lifecycle of cement, stabilise and reduce toxic hexavalent chromium (Chromium VI) to within safe regulatory limits, and significantly lower material costs and environmental impact.
We offer expert guidance for the direct application of QUANTREG nano-regeneration technology at both manufacturing plants and construction sites, enabling the instant enhancement of expired or underperforming cement. Our specialists ensure seamless integration into existing processes, maximising material recovery and performance efficiency.
We ensure precise integration into your cement or concrete formulations, delivering measurable improvements in sustainability, performance, and safety across construction projects.
Restore the strength, durability and performance of your concrete with our bespoke QUANTREG nano-regeneration blends. Our QUANTREG nanoadditives integrate seamlessly into your specific cement or concrete formulations, rejuvenating aged or underperforming materials with precision-engineered nanotechnology.
For tailored solutions and implementation guidance, our on-site consulting services are available to support your team from assessment to full-scale application.
Payments can be made directly through our website via bank transfer, credit card, stablecoin, invoice issuance for a bank transfer.
USAGE : Simply add the QUANTREG nanopowder(s) to your expired cement, mix thoroughly prior to hydration, then proceed as usual.
The Higher the surface area (BET) of the nanoparticles, the more effective the nanomaterial and the lower the required dose.
**Doses can be varied depending on the designated application and functional need.
Products are sold exclusively on our website
SUBSCRIPTION MODEL : Get special rates and free shipping with pre-order purchase subscriptions
QUARTERLY ( 5 % ) | BI-ANNUALLY ( 10 % ) | ANNUALLY ( 15 % )
WE SHIP WORLDWIDE
NANOARCHITECTURE : <25 nm (0.025 μm) hollow semi-spherical nanoparticles
BLAINE : 388000 cm²/g
COLOUR : White Nanopowder
AVERAGE DOSAGE IN CEMENT : 0.001 -0.004 wt %
AVERAGE COMPRESSIVE STRENGTH GAIN**: approx. 20 - 40 %
APPLICATIONS : Nano-cementitious system to restore and enhance both cement reactivity and binding strength. It helps accelerate the cure rate of concrete and offset the negative impact of fly ash and GGBS on the early-age properties of concrete. Improved workability, Nano-Filler, Compressive Strength reinforcement of concrete mortar and cement paste, Whitener/colour additive, Halogen-Free Flame Retardant.
Helps in the consolidation of unsound formations, repairing casing leaks in squeeze operations, particularly “tight” leaks that are inaccessible to microfine and conventional cement slurries due to their larger particle size and limited penetrability.
COLOUR : White Nanopowder
BLAINE : 359300 cm²/g
AVERAGE DOSAGE IN CEMENT : 0.001 -0.005 wt %
AVERAGE COMPRESSIVE STRENGTH GAIN**: approx. 20 - 45 %
APPLICATIONS : Nano-cementitious system to restore and enhance both cement reactivity and binding strength. It helps reduce concrete cure/setting time by working as an accelerator or early stage activator of ground-granulated blast-furnace slag (GGBS or GGBFS) and enhance concrete strength gain. Expansive agent to reduce autogenous-shrinkage, Increase Compressive & Tensile Strength, Corrosion Inhibitor (Mitigate sulphate attack) & pH Elevator, Mold and Mildew Resistance, Low Air Permeability, Abrasion Resistance, Antistatic Agent, Halogen-Free Flame Retardant.
NANOARCHITECTURE : ~ 5 nm (0.005 μm) spherical particles
BLAINE/ SPECIFIC SURFACE AREA : 415300 cm²/g
COLOUR : White Nanopowder
AVERAGE DOSAGE IN CEMENT : 0.0008 - 0.003 wt %
AVERAGE COMPRESSIVE STRENGTH GAIN**: approx. 20 - 55 %
APPLICATIONS : Compressive Strength reinforcement, improve workability, UV filtering, Antibacterial, Antifouling, Anticorrosion (resistance to chloride attack), Reduced Alkali Reactivity, Water Repellant, Lower Air permeability, Whitener/colour additive, Halogen-Free Flame Retardant.
Helps in the consolidation of unsound formations, repairing casing leaks in squeeze operations, particularly “tight” leaks that are inaccessible to microfine and conventional cement slurries due to their larger particle size and limited penetrability.
NANOARCHITECTURE : Atomically Thin 2D sheets ( < 1 nm)
BLAINE : 635200 cm²/g
COLOUR : White Nanopowder
AVERAGE DOSAGE IN CEMENT : 0.0005 -0.002 wt %
AVERAGE COMPRESSIVE, FLEXURAL & TENSILE STRENGTH GAIN**: approx. 20 - 65 %
APPLICATIONS : Compressive & Flexural/Tensile Strength reinforcement, improves workability, UV filtering, Antibacterial, Antifouling, Anticorrosion (enhanced resistance to chloride attack), Reduced Alkali Reactivity, Water Repellant, Lower Air permeability, Whitener/colour additive, Halogen-Free Flame Retardant.
NANOARCHITECTURE : Atomically Thin 2D sheets
BLAINE : 495500 cm²/g
COLOUR : Black/Blackish-Brown Nanopowder
EMISSIVITY (PERFECT EMISSIVITY = 1 ) : 0.969 to 0.973
AVERAGE DOSAGE IN CEMENT : 0.001 -0.003 wt %
AVERAGE COMPRESSIVE & FLEXURAL STRENGTH GAIN**: approx. 20 - 55 %
AVERAGE Cr (VI) CAPTURE DOSE : 1 gram of QUANTREG CHROME absorbs approx. 50 mg of Cr (VI). Dose varies with the level of Cr(VI) contamination.
APPLICATIONS : Expired cement can contain concentrations of water-soluble hexavalent chromium (Cr(VI)) well above the regulated limit of 2 mg/kg, with some samples showing levels as high as 4.7–25 mg/kg of cement. QUANTREG CHROME is a highly effective nano-sorbent material for the removal of hexavalent chromium (Cr(VI)) through a combination of adsorption and redox reactions, where it reduces Cr(VI) to less toxic trivalent chromium (Cr(III)).
It is effective in shielding Gamma rays, enhances the flexural strength of aggregate in high density concrete for radiation shielding in nuclear power plants, X-ray facilities and uranium mining sites.
It is a high thermal mass material for concrete insulation, High density concrete is efficient in heat retention than standard concrete. This enables it to be used retard hold in solar heat from exteriors (hot climate) or retard solar heat loss from interiors (temperate and cold climates) or as a high emissivity coating to release heat to the environment, when surrounding temperatures drop.