Custom Formulations and Blending

AH2 Hydrogen Blends With Surfactants & Other Additives

Cargo

Ocean Tankers

Waste

Soil & Garbage

Tanks

Petrochem Tank Cleaning

Railcar

Rail Tankage Cleaning

Remediation

Spills and Containment

NORM

Radiation Abatement

“As the COO of Pure Science, I’m thrilled to unveil our groundbreaking hydrogen technology. This cutting-edge solution enhances the efficiency of hydrogen transportation and logistics by significantly lowering distribution costs. With its uniquely low pH yet “neutral” behavior, our technology provides innovative chemical formulations that enable safe, eco-friendly applications in fields such as oil and gas, biomedicine, and antimicrobial solutions.”

Shawn Gray, COO, Pure Science LLC.

AH2 Base & Additive Chemistry

    • Specific Application Process and Protocol Development Support to Leverage Efficient Use of Pure Science Chemistries
    • Works on C5 unrefined Gasoline, Butane, Benzene, Isobutene, LNG/LPG, Reformate, Naphtha ,Crude Oil, Xylene, Para-Xylene, Butadiene, and more
    • PureScience Advantage Can be utilized for soil remediation and spills where it is used to break down heavy crude in hard to dig areas followed by PureScience Industrial HD Clean applied to consume oil with microbial action

AH2 Mechanisms of Action

Precipitation of Solids:

    • Hydrogen Bonding and Aggregation: The high hydrogen content could promote hydrogen bonding with various contaminants, leading to aggregation and precipitation.
    • Redox Reactions: Oxygen and trace elements could participate in redox reactions, converting soluble contaminants into insoluble forms that precipitate out.

Eliminates Chlorides:

    • Formation of HCl: The interaction between hydrogen and chloride ions might produce hydrochloric acid (HCl), which could then be neutralized or precipitated.

Reduction of Arsenic and Cyanide:

    • Reduction of Arsenic: Hydrogen could reduce arsenic compounds to less soluble forms (e.g., converting Arsenate to Arsenite).
    • Formation of Hydrogen Cyanide: Cyanide could react with hydrogen, forming hydrogen cyanide (HCN), which is then captured or neutralized.

Odor Elimination (Ammonia and Other Odors):

    • Reaction with Ammonia: Hydrogen could react with ammonia to form harmless compounds such as nitrogen and water.
    • Oxidation: Oxygen and trace elements may oxidize volatile organic compounds (VOCs), neutralizing odors.

Site Cleaning & Tank Remediation

In-Situ Chemical on-site maintenance and cleanup for drilling operations. Utilizing innovative environmental chemistries that effectively handle NORM, Chlorides, Drilling Muds, and Hydrocarbons, reducing the need for costly waste disposal.

    • Waste Reduction: Focused on reducing waste at source to cut down cleanup costs.
    • Compliance and Cost: Adheres to strict environmental regulations and corporate policies, aiming for cost-effective waste handling.
    • Waste Minimization Principle: Emphasizes prevention and recycling, with the mantra “Don’t make a big problem out of a small one.”

Our approach integrates environmental care with drilling and tank operations, aiming for efficient waste management and minimization. This results in both cost-effective and environmentally responsible drilling and storage practices.

AH2 & waste management

Strong oxidizing properties and offers the ability to interact with various waste components, it is a powerful tool in comprehensive waste management strategies aimed at controlling disease, odor, leaching, and seepage:

    • Disease Control: Sanitize waste and prevent pathogen spread.
    • Odor Control: Neutralize odorous compounds through oxidation.
    • Leaching Control: Stabilize hazardous substances to prevent leaching.
    • Seepage Control: Create barriers to prevent liquid migration from waste sites.
    • Waste Stabilization: Neutralize reactive chemicals to ensure safer disposal.
    • Direct Addition: Pure Science H2 Waste Treatment Chemistry can be directly mixed with waste materials, either in solid or liquid form, depending on the type of waste being treated.
    • In Situ Treatment: For contaminated soils or landfills, Pure Science H2 could be applied in situ to stabilize and treat contaminants directly within the waste matrix.
    • Air and Water Treatment: The compound could be used in systems designed to treat air emissions or leachate from waste sites, ensuring that contaminants are neutralized before they escape into the environment.

RadClear – A Quantum Leap in Norm Management

RadClear™ & NORM Chemical Reactions

Oxidation-Reduction (Redox) Reaction | Enhanced Solubilization | Increased Surface Area | Improved Mixing

    • Efficiency: The Pure Science H2 NORM remediation chemistry significantly increase the efficiency of the remediation process by improving the interaction between the reactive Pure Science agents and the NORM contaminants.
    • Versatility: The system is more versatile, allowing it to tackle a broader range of contaminants and environmental conditions.
    • Effectiveness: More complete removal of NORM contaminants due to improved solubilization, dispersion, and targeted reactions.
    • Benefits: Controlled Separation, Desorption of Norm, Enhanced Transport, Complexation

NORM remediation with AH2 assists in both aqueous and gaseous forms:

    • Reduction of Radionuclides: Hydrogen can act as a reducing agent in chemical reactions, potentially converting soluble radionuclides (like uranium) into less soluble forms, which can then be more easily removed from contaminated sites.
    • Bioremediation: In some bioremediation strategies, hydrogen can serve as an electron donor for specific microbial processes. Certain bacteria can use hydrogen to facilitate the reduction of heavy metals and radionuclides, thereby immobilizing them.
    • Hydrogen Gas Injection: In some cases, injecting hydrogen gas into contaminated groundwater can enhance the reduction of radionuclides by promoting anaerobic conditions favorable for specific microorganisms that can facilitate the detoxification process.
    • Enhanced Cleanup Methods: Hydrogen can be utilized in various advanced oxidation processes (AOPs) where it helps in the generation of reactive species that can break down contaminants, including those associated with NORM.