H2S KNOCKOUT | NON-TRIAZINE CHEMISTRY

NON-TRIAZINE H2S SCAVENGERS

NON-TRIAZINE H2S SCAVENGERS

A broad portfolio of non-triazine H2S scavenger technologies engineered for oil, produced water, mixed-fluid, and appropriate gas applications. Knockout combines application-specific chemistry with injection strategy, mixing, field monitoring, process understanding, and continuous optimization.

CHEMISTRY BUILT AROUND THE APPLICATION.

APPLICATION-SPECIFIC CHEMISTRY

ONE H2S PROBLEM. MULTIPLE CHEMISTRIES TO SOLVE IT.

Oil is not produced water. Produced water is not natural gas. A low-H2S continuous program is not the same application as extreme sulfur loading. Knockout maintains multiple non-triazine technologies so product selection can follow the operating conditions.

OIL

Hydrocarbon-phase formulations selected around H2S load, flow, contact, and process conditions.

WATER

Water-phase technologies selected around H2S performance and system compatibility.

GAS

Liquid scavenger chemistry where it fits the gas rate, sulfur load, contact system, and economics.

SELECT THE CHEMISTRY AROUND THE APPLICATION. NOT THE APPLICATION AROUND THE CHEMISTRY.

ANOTHER PATH FOR H2S CONTROL

H2S TREATMENT DOESN’T HAVE TO BEGIN AND END WITH TRIAZINE.

Traditional triazine chemistry remains widely used for H2S scavenging. In some systems, however, chemical consumption, dithiazine byproducts, solids, fouling, downstream compatibility, maintenance, and total program cost can make another chemistry worth evaluating. Knockout’s non-triazine platform provides additional treatment options when the operating environment calls for a different approach.

THE RIGHT CHEMISTRY FOR THE ACTUAL SYSTEM.

OIL

NON-TRIAZINE CHEMISTRY FOR HIGH-H2S HYDROCARBON SYSTEMS.

Knockout maintains multiple non-triazine chemistries designed for crude-oil and hydrocarbon treatment. Depending on the selected formulation and application, programs may support rapid H2S reaction, high chemical efficiency, continuous injection, batch treatment, and integration with appropriate contact and mixing systems—while avoiding dithiazine formation associated with triazine chemistry.

REPRESENTATIVE TECHNOLOGY

OIL-PHASE NON-TRIAZINE H2S SCAVENGER

ONE OF MULTIPLE KNOCKOUT HYDROCARBON-PHASE FORMULATIONS.

Selected technologies can be liquid, single-phase systems designed for rapid reaction on contact, high treating capacity, and application through continuous injection, batch application, or appropriate contact systems. Product selection remains application-specific.

FORM

LIQUID

SPECIFIC GRAVITY

1.32

DENSITY

11.02 LB/GAL

pH @ 68°F

13–14

Representative comparative testing of a selected Knockout oil-phase formulation demonstrated approximately 4–5× the treating capacity of the referenced standard triazine.

PRODUCED WATER

TREAT THE H2S. UNDERSTAND THE WATER AROUND IT.

Produced-water H2S treatment is not simply about reducing a headspace number. The chemistry must operate inside a water system that may also contain iron, dissolved minerals, solids, hydrocarbons, scale-forming ions, variable pH, and other site-specific conditions. Knockout’s water-phase portfolio is selected around both H2S performance and system compatibility.

REPRESENTATIVE WATER TECHNOLOGY

KO-HSW1776

ONE OF MULTIPLE KNOCKOUT WATER-PHASE H2S SOLUTIONS.

A non-triazine liquid, single-phase, water-miscible technology with rapid reaction on contact. Effective mixing enhances performance in appropriate produced-water and mixed-fluid applications. Product selection is application-specific; Knockout maintains additional water-phase technologies for different fluid chemistries and operating conditions.

FORM

LIQUID

SPECIFIC GRAVITY

1.09

DENSITY

9.1 LB/GAL

pH @ 68°F

5.5–7.5

APPLICATION ENGINEERING

THE CHEMISTRY CAN ONLY REACT WITH THE H2S IT CONTACTS.

Chemical selection alone does not determine treatment performance. Scavenger efficiency can also depend on injection location, mixing, contact opportunity, flow, process configuration, circulation, residence conditions, and the location of the H2S measurement. Knockout evaluates both the chemistry and how that chemistry contacts the stream.

CHEMICAL INJECTION → MIXING → H2S CONTACT → REACTION → TREATED STREAM → VERIFY PERFORMANCE

THE PRODUCT MATTERS. HOW IT IS APPLIED MATTERS TOO.

PROCESS COMPATIBILITY + TREATMENT ECONOMICS

A TREATMENT PROGRAM SHOULDN’T CREATE A SECOND OPERATING PROBLEM.

H2S reduction is one performance metric. A successful program also considers solids, iron, filters, tanks, piping, separation, water handling, downstream equipment, chemical consumption, delivery, storage, field labor, cleanouts, maintenance, downtime, and overall facility compatibility. Knockout focuses on total cost to achieve the operating objective—not simply $/gallon.

REDUCE RISK. MANAGE THE SYSTEM. EVALUATE THE APPLICATION.

FIELD RESULTS

PROVEN IN REAL OPERATING SYSTEMS.

Knockout non-triazine programs have been deployed across oil, produced-water, and gas applications. Detailed field case studies and application results will be linked here as approved technical documentation becomes available.

CRUDE OIL

APPROVED RESULTS COMING SOON

PRODUCED WATER

APPROVED RESULTS COMING SOON

MIDSTREAM

AVAILABLE THROUGH OUR TECHNICAL TEAM

NATURAL GAS

APPROVED RESULTS COMING SOON

H2S KNOCKOUT

CHEMISTRY IS ONE TOOL IN A LARGER H2S PLATFORM.

For appropriate applications, Knockout connects non-triazine chemistry with Dry Media, Mechanical H2S Stripping Towers, ODIN ECSRU, Specialty Chemicals, Engineering, and field execution. The application defines the technology.

NON-TRIAZINE H2S SCAVENGERS • DRY MEDIA • MECHANICAL H2S STRIPPING TOWERS • ODIN ECSRU

DON’T START WITH A PRODUCT NAME. START WITH THE H2S PROBLEM.

EVALUATE MY APPLICATION

GAS

NON-TRIAZINE LIQUID SCAVENGERS—WHEN LIQUID CHEMISTRY FITS THE GAS APPLICATION.

Selected Knockout non-triazine chemistries can be applied to natural-gas H2S treatment where liquid scavenger chemistry is appropriate. Gas rate, H2S concentration, total sulfur load, pressure, contact system, downstream requirements, solids risk, and treatment economics all help determine whether this pathway fits—or whether Dry Media, ODIN, or another architecture should be evaluated.

THE APPLICATION DEFINES THE TECHNOLOGY.

BUILT TO SOLVE MORE OF THE PROBLEM

H2S DOESN’T EXIST IN ISOLATION.

The same production system experiencing H2S may also have corrosion, iron, scale, paraffin, emulsions, water-quality, solids, microbial activity, and other chemistry challenges. H2S Knockout connects directly with Specialty Chemicals, Engineering, and field execution so treatment can be evaluated as part of the broader operating system.

H2S CONTROL + CORROSION MANAGEMENT + SCALE CONTROL + PARAFFIN MANAGEMENT + SOLIDS / WATER MANAGEMENT → MORE COMPLETE PROCESS MANAGEMENT.

APPLICATION EVALUATION → PRODUCT SELECTION → INJECTION STRATEGY → FIELD DEPLOYMENT → MONITORING → PERFORMANCE DATA → OPTIMIZATION.

TECHNICAL DATA. FIELD RESULTS. APPLICATION SUPPORT.

Technical sales sheets, application guidance, and approved field documentation are available through the Knockout technical team. Case studies will be added here as public technical documentation is approved.

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