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VAP-X™ GAS BLEND

Vap-X™ Gas Blend has been formulated to greatly reduce H2S and CO2 in a gas stream.

Non-triazine baseWater-side sequestrationAutomated dosing

What is it?

This chemistry can effectively reduce H2S and CO2 by 50–70% economically. When acid gas is present the water vapor tends to be at acidic levels. Vap-X™ Gas Blend is engineered to neutralize the acids thereby converting the H2S out of the sulfide phase. In many battery applications water plays a main role in causing scale especially when a high pH chemical is introduced to mitigate the H2S.

Vap-X™ Gas Blend is a proprietary chemistry that allows for elemental sulfur to be displaced in the water wash. Proprietary application is used to apply the chemistry and allow the chemistry to migrate thru the gas column. Vap-X™ Gas Blend is best utilized in high H2S concentrations with water being present. The dosing rate is based on volume of liquid flow rate therefore it is ideal to be used via an automated pump.

Apollo Petroleum solutions

  • Non-triazine base
  • Requires lower dosages
  • No supply chain issues
  • More economical than other options

Application

  1. Apply dosage mainly based on volume
  2. Treat in-line or batch treatment
  3. Mitigate Hydrogen Sulfide (H2S) and Carbon Dioxide (CO2) at facility
  4. Contaminants get sequestered in the waterside of the application

Physical data

AppearanceColorless
Specific gravity1.2

How the gas application flows

The gas blend diagram

Sour gas enters through a static mixer in the first contactor column, passes BV-6 into the separator, and leaves treated through BV-10. Chemical is dosed by pump through BV-1; liquids drain at the skid base through BV-12 and BV-11.

▶ Tergeo 360° displayThe skid the chemistry runs on
VAP-X Gas Blend application diagram Skid-mounted arrangement: sour gas enters through a static mixer in the first of three contactor columns, passes valve BV-6 into a horizontal separator, and leaves through valve BV-10 at the top. Chemical is dosed by a pump through valve BV-1. Liquids drain through BV-12 and BV-11 at the skid base. GAS IN BV-1 BV-6 Separator BV-10 BV-12 BV-11 Skid Base
Sour gas in Treated gas out Redrawn as vector from the source drawing

Related process

The Tergeo Process™

Vap-X™ Gas Blend Chemistry is specially formulated to significantly reduce/eliminate the levels of H2S and CO2 present in gas streams in an economical way. The Tergeo skid system optimizes efficiency.

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Process

The Tergeo Process™

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