RENEW WATER VALUE
Using our proprietary MAC technology, we selectively remove contaminants from groundwater, industrial water and wastewater with exceptional accuracy. By achieving non-detect levels and exceeding the highest international standards, we enable customers to reuse purified water as a valuable resource for drinking, industry and mining.
We rise to each challenge with dedication, utilizing our high-level skills, vast experience and profound research expertise, backed by our full-service laboratory. For over a decade, our near-zero-cost approach based on the circular economy model has proven effective at converting polluted water into tangible and precious assets, with low energy consumption – minimizing eco-footprint, saving water and OPEX, and, creating new revenue streams.
Our Mission
Technology
Our groundbreaking MAC technology enables extraordinary selective removal of inorganic contaminants, while preserving the capability to absorb organic contaminants, via modification of traditional activated carbon. Each MAC platform has both selectivity and affinity towards a specific pollutant. Proprietary MAC technology is NSF approved for chromium, cyanide and perchlorate removal for recycling of groundwater into drinking water. It also enables removal of lead and other pollutants.
MAC Advantages:
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SOLUTIONS
ToxSorb provides industrial wastewater and drinking water treatment solutions comprising systems for removing harmful pollutants from a wide variety of water sources, while generating profitable water assets. Our solutions improve public health, increase sustainability and boost savings.
Our end-to-end service offering spans R&D and engineering to pilot demonstration, through to construction and operation. We work hand in hand with customers, providing modular and turnkey solutions that meet their needs and enable them to optimize their core business.
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BUSINESS Partners
including water and regulatory authorities, as well as industrial and mining companies.
Knowledge
Breaking the double-edged sword is possible by using an efficient process other than traditional ion exchange for regeneration.