Anionic natural latex for formulation of anionic asphalt emulsions. Typically HA-based; improves elasticity, elastic recovery, and aging resistance of the modified binder.
Natural Latex — Cationic
Cationic Natural Latex
Description & Application
Cationic natural latex for fast and medium-setting emulsions. Enhanced adhesion to acidic aggregates; typically formulated on HA base. Available in LA base upon request.
Low Ammonia (LA
Natural Latex
Description & Application
Low-ammonia alternative for asphalt emulsion plants with stricter VOC/odor requirements.
Pre-vulcanized
Natural Latex
Description & Application
Pre-cured NL for applications requiring faster film formation and improved dimensional stability of the asphalt film.
Synthetic Latex
NTL-70 — Anionic (High-Solids SBR)
Anionic SBR — Asphalt
Description & Application
High-solids SBR (~70%) for anionic asphalt emulsion modification. Improves elastic recovery, reduces penetration, and raises softening point of the modified bitumen.
NTL-70C — Cationic (High-Solids SBR)
Cationic SBR — Asphalt ⚠ In Development
Description & Application
Cationic variant of NTL-70, currently in development/testing phase. Designed for cationic controlled-breaking emulsions; compatible with negatively charged aggregate surfaces.
NTL-218 (XSBR)
Medium-Styrene XSBR
Description & Application
XSBR for microsurfacing and slurry seal emulsions where improved adhesion and cohesion are required.
NTL-260 (XSBR)
Medium-High Styrene XSBR
Description & Application
Good water resistance; suitable for modified emulsions in exterior and high-humidity road applications.
L-2000 (Medium-Styrene SBR)
Medium-Styrene SBR
Description & Application
Also applicable in more economical asphalt emulsion modification formulas.
AQUEOUS DISPERSIONS
AQUANOX® – Antioxidants
Aqueous Dispersion
Description & Application
Antioxidant protection in asphalt formulations exposed to elevated processing and service temperatures.
Vulcanization & Accelerators
Aqueous Dispersion
Description & Application
Curing systems for natural rubber-based asphalt compounds; optimize bond strength and aging performance.