H2S KNOCKOUT

ONE H2S PROBLEM. MULTIPLE WAYS TO SOLVE IT.

ONE H2S PROBLEM. MULTIPLE WAYS TO SOLVE IT.

H2S behaves differently across oil, water, and gas — and the right treatment depends on more than concentration alone. H2S Knockout combines chemistry, solid media, mechanical separation, electrochemical sulfur recovery, engineering, and field execution to build the treatment architecture around the actual operating conditions.

H2S behaves differently across oil, water, and gas — and the right treatment depends on more than concentration alone. H2S Knockout combines chemistry, solid media, mechanical separation, electrochemical sulfur recovery, engineering, and field execution to build the treatment architecture around the actual operating conditions.

APPLICATION-SPECIFIC H2S TREATMENT

THE APPLICATION DEFINES THE TECHNOLOGY.

Treatment selection can depend on phase, H2S concentration, total sulfur load, flow rate, pressure, temperature, fluid chemistry, process configuration, available utilities, downstream requirements, operating range, and total lifecycle economics.

Treatment selection can depend on phase, H2S concentration, total sulfur load, flow rate, pressure, temperature, fluid chemistry, process configuration, available utilities, downstream requirements, operating range, and total lifecycle economics.

APPLICATION CONDITIONS

TECHNOLOGY SELECTION

ENGINEERED TREATMENT SYSTEM

SELECT THE TREATMENT AROUND THE APPLICATION

WHAT ARE YOU ACTUALLY TRYING TO TREAT?

OIL

Potential paths include non-triazine H2S scavengers, Mechanical H2S Stripping Towers, or an application-specific engineered combination. Start with H2S level, oil rate, fluid properties, process conditions, and treatment objective.

WATER

Potential paths include non-triazine H2S scavengers and Mechanical H2S Stripping Towers. Consider dissolved H2S, water chemistry, flow rate, iron and solids, process configuration, and downstream water requirements.

GAS

Potential paths include non-triazine H2S scavengers, Dry Media, ODIN ECSRU, and appropriate combinations. Consider gas rate, H2S concentration, total sulfur load, pressure, operating range, and lifecycle economics.

START WITH THE STREAM. THEN SELECT THE TECHNOLOGY.

THE KNOCKOUT ADVANTAGE

BUILT TO SOLVE MORE OF THE H2S PROBLEM.

BUILT TO SOLVE MORE OF THE H2S PROBLEM.

H2S treatment rarely exists in isolation. The treatment system can affect process equipment, corrosion, solids, water, paraffin, vapor systems, downstream gas, maintenance, and overall operating economics. Knockout connects specialized H2S technology with the disciplines needed to solve more of that system.

H2S treatment rarely exists in isolation. The treatment system can affect process equipment, corrosion, solids, water, paraffin, vapor systems, downstream gas, maintenance, and overall operating economics. Knockout connects specialized H2S technology with the disciplines needed to solve more of that system.

KNOCKOUT ENGINEERING — ENGINEER THE PROCESS. ↓ KNOCKOUT FABRICATION — BUILD THE EQUIPMENT. ↓ AUTOMATION — CONTROL + MONITOR. ↓ H2S KNOCKOUT — APPLY THE TREATMENT. ↓ KNOCKOUT FIELD SERVICES — INSTALL + SUPPORT IT. ↓ KNOCKOUT SPECIALTY CHEMICALS — PROTECT THE PROCESS. ↓ FIELD PERFORMANCE BACK TO ENGINEERING.

H2S KNOCKOUT

WHAT ARE YOU TRYING TO TREAT?

WHAT ARE YOU TRYING TO TREAT?

Tell us the phase, H2S condition, flow, pressure, temperature, operating range, and treatment objective. Our H2S and Engineering teams can evaluate which treatment architecture fits the application.

Tell us the phase, H2S condition, flow, pressure, temperature, operating range, and treatment objective. Our H2S and Engineering teams can evaluate which treatment architecture fits the application.

EVALUATE MY H2S APPLICATION

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