PlusTi

PlusTi™ A.R.A.-1 Ti® Asphalt Rejuvenator / Sealer Product for Roads and More

America’s first TiO2-enhanced photocatalytic rejuvenator/sealer for asphalt roadways

PlusTi™ A.R.A.-1 Ti® asphalt rejuvenator / sealer combines Maltene Replacement Technology (MRT) to revitalize and seal aging asphalt with Photo Catalytic Technology (PCT) that removes nitrogen oxides (NOx), volatile organic compounds (VOC), and other airborne vehicular exhaust pollutants. The solar-reflective top surface reduces heat absorption and related radiative forcing (RF) by materially reducing the convective re-release of UV radiation that would otherwise contribute to the heat island effect common in our urban centers. The chemistry also slows down pavement oxidation, thereby further extending the service life of treated surfaces.

When asphalt pavements, runways, bridges, parking lots, highway shoulders and other asphalt surfaces are treated with deeply penetrating PlusTi™ asphalt rejuvenator/sealer, the resulting air- and stormwater-purifying surface perpetually regenerates itself, contributing to compliance with U.S. EPA’s stringent National Ambient Air Quality Standard (NAAQS) and amassing both U.S. Green Building Council (USGBC) LEED and Institute for Sustainable Infrastructure (ISI) Envision credits.

  • MRT replaces the natural maltene components that give asphalt its flexibility, fluidity and adhesion properties, thereby extending the service life of asphalt pavements from five to ten years realizing significant life-cycle cost savings.
  • PCT is playing an increasingly important role in construction materials since photocatalytic properties both repel UV radiation and improve water desorption.

PlusTi™ Ti-intro CME® All-Purpose Penetrant for Road Surfaces

Transforms asphalt and concrete surfaces into pollution- and heat-reducing change agents

PlusTi™ Ti-intro CME® all-purpose penetrant* is a titanium dioxide (TiO2) enhanced cationic molecular emulsion in a carrier liquid that deeply penetrates asphalt and concrete pavement. It uniformly distributes Photo Catalytic Technology (PCT) to the surface and upper matrix of the substrate structure in a process known as distributive embedding.

PCT, first introduced to pavements in the 1970s, is playing an increasingly important role in reducing the pollution and excessive heat associated with urban living. The TiO2 photocatalytic material creates and accelerates natural oxidative electrochemical reactions at the road surface that reduce atmospheric vehicle exhaust gas by removing harmful nitrogen oxides (NOx), volatile organic compounds (VOCs) and other contaminants, such as tire-wear debris, generated by automotive, bus, truck and air traffic.

The solar-reflective top surface reduces heat absorption and related radiative forcing (RF) by materially reducing the convective re-release of UV radiation that would otherwise contribute to the heat island effect common to our urban centers. The resulting air- and stormwater-purifying surface perpetually regenerates itself, contributing to compliance with U.S. EPA’s stringent National Ambient Air Quality Standard (NAAQS) and amassing both U.S. Green Building Council (USGBC) LEED and Institute for Sustainable Infrastructure (ISI) Envision credits.

PlusTi™ all-purpose penetrant slows down pavement oxidation, thereby extending the service life of treated surfaces. Treated asphalt and concrete pavements, runways, bridges, parking lots, highway shoulders and other surfaces also benefit from the quick-drying attributes of a chemistry that creates a super-hydrophilic high-performing water-resistant barrier.

NOx Reduction Efficiency

Solar Reflectance Efficiency

Main Headquarters:
52303 I-10, Comfort, TX 78013
Proudly serving Texas, Arizona, Colorado, Utah and New Mexico.

Our Values

Our philosophy is foremost, attentive service, with honesty and integrity to our clients. Our aim is to establish long-term relationships with our customers. These relationships will both enhance the value, and condition of their road networks, and allow their budgets to stretch further.

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