Latex 2000™ Cement Additive

Enhancing key performance properties of cement slurry

Latex 2000 cement additive improves three important properties of cement slurries. The liquid additive can improve acid resistance, fluid-loss control, and high-temperature suspension properties.

Latex 2000 additive can be used across a wide range of well conditions and circulating temperatures (from ambient to 380°F), and it can play an important role in both primary casing cementing operations and remedial squeeze work.

Treating cement with Latex 2000 cement additive yields slurries with excellent wetting properties, low viscosities, and increased resiliency. These properties help increase bonding strength, resulting in a tighter annular seal and superior zonal isolation. Halliburton’s MicroBond and Super CBL expansive agents are often incorporated into slurries containing Latex 2000 additive to help maximize bond strengths.

Latex 2000 additive helps protect slurries against corrosive fluids such as acids. The additive can enhance the solids-suspension properties of high-density slurries, and it can improve rheological properties as it helps control slurry segregation.

Halliburton’s gas migration theory is the starting point for top-performing slurries using Latex 2000 additive. The results can include precision mixes that provide low fluid-loss control, delayed static gel time, and short transition time. 

Latex 2000 additive - Product Specifications
Part No. 100009906 Boiling Point 212°F (100°C)
Form Opaque white liquid Packaging 54-gal drum
Specific Gravity 1.00 Freeze Point 32°F (0°C) 
pH 8.7 Flash Point >190°F (87.8°C)



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Latex 2000™ Cement Additive

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  TitleНазвание  DateДата
Summary Summary Stabilizer 434B Latex Stabilizer
Stabilizer 434B latex stabilizer helps prevent gas migration in Latex 2000 cement, a low fluid-loss cementing system. Latex 2000 cement is a water-internal, oil-external emulsion; in the presence of water, the system tends to come out of emulsion, losing its effectiveness against gas migration. Stabilizer 434B latex stabilizer helps prevent the de-emulsification of Latex 2000 cement.
Summary Summary Stabilizer 434B Latex Stabilizer A-4
Stabilizer 434B latex stabilizer helps prevent gas migration in Latex 2000 cement, a low fluid-loss cementing system. Latex 2000 cement is a water-internal, oil-external emulsion; in the presence of water, the system tends to come out of emulsion, losing its effectiveness against gas migration. Stabilizer 434B latex stabilizer helps prevent the de-emulsification of Latex 2000 cement.
Summary Summary Latex 2000 A-4
Latex 2000 liquid additive is designed to impart excellent fluid-loss control, high-temperature suspension properties, and acid resistance to cement slurries. Latex 2000 additive is successful across a wide range of well conditions (Ambient to 380°F circulating temperature) and is used in both primary casing cementing operations and remedial squeeze work.
Summary Summary Latex 2000
Latex 2000 liquid additive is designed to impart excellent fluid-loss control, high-temperature suspension properties, and acid resistance to cement slurries. Latex 2000 additive is successful across a wide range of well conditions (Ambient to 380°F circulating temperature) and is used in both primary casing cementing operations and remedial squeeze work.
Summary Summary Latex 2000 (Russian)
Latex 2000 liquid additive is designed to impart excellent fluid-loss control, high-temperature suspension properties, and acid resistance to cement slurries. Latex 2000 additive is successful across a wide range of well conditions (Ambient to 380°F circulating temperature) and is used in both primary casing cementing operations and remedial squeeze work.
Summary Summary Latex 2000™ Cement Additive
Excellent fluid-loss control, high-temperature suspension properties, and acid resistance to cement slurries.
Summary Summary Latexes
Halliburton's latex cement systems control gas-migration by reducing fluid loss. Latex can also provides acid resistance properties to cement slurry system. Latex can aid suspension in slurry without greatly increasing viscoity.
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