BoronTrapp® combines high-purity TrappSorb® magnesium oxide beads with Crystolite® microfiltration media to reduce boron and reaction-generated particles from water.
Boron occurs naturally in groundwater and surface water through geological processes and may also enter water resources through wastewater, detergents, fertilisers and industrial discharges. Although boron is an essential plant micronutrient at low concentrations, excessive levels can affect sensitive crops, restrict irrigation-water reuse and cause drinking-water compliance concerns. The BoronTrapp® process uses porous TrappSorb® magnesium oxide beads as its reactive first stage, followed by a backwashable Crystolite® filtration bed. The magnesium-based stage is intended to adsorb or transform boron-containing species, while the second stage retains the resulting particles and suspended solids.
BoronTrapp® can be applied where boron limits drinking-water use, industrial reuse, membrane operation or irrigation of boron-sensitive crops.
Municipal or commercial drinking-water conditioning to meet regional boron compliance limits.
Treatment of naturally occurring dissolved boron in well supplies and regional aquifers.
Protecting sensitive crops from excessive boron in groundwater and reclaimed irrigation water.
Specialised treatment for manufacturing, drilling and chemical processing effluent containing dissolved boron.
Post-treatment options for reducing residual boron after desalination or high-recovery RO.
Conditioning treated wastewater to allow safe agricultural or industrial reuse without boron toxicity.
Porous magnesium oxide beads provide hydroxylated mineral surfaces that can interact with dissolved boron species under controlled water-chemistry conditions.
TrappSorb® hydrates when exposed to water and modifies the local surface chemistry, supporting adsorption or mineral-reaction pathways.
Crystolite® captures suspended particles and reaction-generated solids, producing a clarified water stream after the reactive treatment stage.
The Crystolite® filtration stage can be periodically backwashed, while consumed TrappSorb® media can be replenished according to bed-volume loss and treatment performance.
In water, boron occurs mainly as boric acid or borate, depending on pH. Effective treatment requires control of this chemical equilibrium and adequate separation of any generated solids.
Essential information about BoronTrapp® chemistry, system operation and performance monitoring.
Contact SupportSend us your water characteristics (boron levels, pH, flow rates, target compliance limit) and application requirements. Our specialists will help evaluate BoronTrapp® for your two-stage treatment system.