Clean Chlorine Dioxide Chemistry at its Best
EPA - Registered Biocides and Specialty Chemicals to Preserve and Improve Asset Value Across Industries
EPA - Registered Biocides and Specialty Chemicals to Preserve and Improve Asset Value Across Industries
Sabre has been treating wells in the Permian Basin for over 30 years with chlorine dioxide to remove damaging agents and stimulate oil and gas production
Pharmaceutical Manufacturing Facilities, Food Processing Plants, and Livestock Facilities have all been successfully decontaminated from pathogens with Sabre's Sterilization Process
Hydrogen Sulfide releases and odor complaints continue to plague several industries. Sabre's chemistries are safer to use and more effective than alternatives
Consistent chlorine dioxide-based chemistries can help strengthen any biosecurity program to protect flocks, herds, plants, infrastructure and facilities from contamination events.
Sabre's DiKlor G Sterilization Process removes molds, mycotoxins, and allergens without the need for traditional rip-and-tear remediation. Hospitals, schools, homes, restaurants, big box stores, industrial and office buildings have all been successfully decontaminated
Our technology was selected by DARPA to decontaminate neonatal wards and then deployed in response to the 2001 Anthrax releases in Washington, D.C. and Florida
Sabre's proprietary filter-less water recycling system can treat millions of gallons of water a day, providing demulsification, heavy metal flocculation, sulfide scavenging and biocidal efficacy in a single system
Chlorine dioxide generators designed and manufactured by Sabre are inherently safe to operate and create chlorine dioxide that is neutral in pH and free of side-reaction contaminants. They've been used in municipal water treatment plants for decades
Sabre's founder and subject matter experts have over 50 years of experience working with EPA, USDA, FDA, DoD, USCG and private industry partners in finding, characterizing, and remediating the most challenging and sensitive microbial contamination events
We specialize in generating and applying the world's best chlorine dioxide solutions. Decades of developing analytical expertise across industries has helped us create innovative chemistries to solve our clients' toughest challenges.
Please reach out to us at info@sabreoxidation.com to connect and discuss how we can help protect your business.
Our generation systems are designed to be inherently safe to operate and produce chlorine dioxide chemistries at a nearly neutral pH and without chlorine contamination. This means a consistent chlorine dioxide solution for our clients that is less corrosive and more stable than our competitors.
Chlorine dioxide has a lower reduction-oxidation (red-ox) potential than ozone, hydrogen peroxide, peracetic acid (PAA), chlorine, and even bleach. This means that chlorine dioxide is more selective and is more likely to only react with contaminants instead of trying to react with everything it contacts.
Aside from chlorine dioxide, we also manufacture chlor-oxy chemicals for the purposes of odor control, sulfide scavenging, and water clarification. Our industry partners provide additional chemistries to round out offerings to our clients.
Any company which provides biocidal chemistries in the US must have those chemistries registered with the Environmental Protection Agency under the Federal Insecticide, Fungicide, and Rodenticide Act (FIFRA). The company must submit efficacy and use data to support these biocidal claims. The EPA verifies this data and grants a registration number to the company. Sabre's EPA Registrations can be found by searching our company number 73139.
There are two explanations for microbial survival when using chlorine dioxide; Number one may be that the dose of chlorine dioxide is too low to overcome the biological 'demand'. Number two may be that the analytical testing is reacting with other chlor-oxy species (i.e. chlorite, bleach, chlorine, etc.) and quantifying it accidentally as chlorine dioxide. The distinction becomes especially more difficult to parse with other fluid constituents, such as heavy metals, hydrocarbons, iodines, etc.
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