C04B24/161

VULCANIZED OIL AND WATER SWELLABLE PARTICULATE COMPOSITE COMPOSITIONS
20180100095 · 2018-04-12 ·

Embodiments herein include a method comprising providing a self-sealing cement slurry comprising an aqueous base fluid, a cementitious material, and a vulcanized oil and water swellable particulate composite, wherein the vulcanized oil and water swellable particulate composite comprises an elastomer, a crosslinked water swellable superabsorbent polymer, and a hydrophobically modified water-soluble polymer; introducing the self-sealing cement slurry into a subterranean formation; and allowing the self-sealing cement slurry to set, wherein the vulcanized oil and water swellable particulate composite is capable of swelling in the presence of a non-aqueous fluid and an aqueous fluid to reduce the permeability of fluid flowpaths in the set self-sealing cement slurry upon loss of structural integrity.

VULCANIZED OIL AND WATER SWELLABLE PARTICULATE COMPOSITE COMPOSITIONS
20180100095 · 2018-04-12 ·

Embodiments herein include a method comprising providing a self-sealing cement slurry comprising an aqueous base fluid, a cementitious material, and a vulcanized oil and water swellable particulate composite, wherein the vulcanized oil and water swellable particulate composite comprises an elastomer, a crosslinked water swellable superabsorbent polymer, and a hydrophobically modified water-soluble polymer; introducing the self-sealing cement slurry into a subterranean formation; and allowing the self-sealing cement slurry to set, wherein the vulcanized oil and water swellable particulate composite is capable of swelling in the presence of a non-aqueous fluid and an aqueous fluid to reduce the permeability of fluid flowpaths in the set self-sealing cement slurry upon loss of structural integrity.

METHOD FOR PRODUCING A THERMALLY INSULATING MORTAR
20180086674 · 2018-03-29 ·

A method for producing a thermally insulating mortar includes introducing water, cement and a liquid surfactant containing a foam concentrate that forms a foam in a predetermined mixing ratio into a mixing device provided with a mixing impeller, and rotating the mixing impeller at a very high speed, wherein a homogeneous mixing between the water, the cement and the formed foam occurs.

DOWNHOLE TOOLS CONTAINING DUCTILE CEMENTING MATERIALS

A downhole tool for controlling the flow of a fluid in a wellbore includes a component that comprises: a cementitious material; an aggregate; and a ductility modifying agent comprising one or more of the following: an ionomer; a functionalized filler; the functionalized filler comprising one or more of the following: functionalized carbon; functionalized clay; functionalized silica; functionalized alumina; functionalized zirconia; functionalized titanium dioxide; functionalized silsesquioxane; functionalized halloysite; or functionalized boron nitride; a metallic fiber; or a polymeric fiber.

DOWNHOLE TOOLS CONTAINING DUCTILE CEMENTING MATERIALS

A downhole tool for controlling the flow of a fluid in a wellbore includes a component that comprises: a cementitious material; an aggregate; and a ductility modifying agent comprising one or more of the following: an ionomer; a functionalized filler; the functionalized filler comprising one or more of the following: functionalized carbon; functionalized clay; functionalized silica; functionalized alumina; functionalized zirconia; functionalized titanium dioxide; functionalized silsesquioxane; functionalized halloysite; or functionalized boron nitride; a metallic fiber; or a polymeric fiber.

Scale Inhibitor and Methods of Using Scale Inhibitors

Various embodiments disclosed relate to scale inhibitors and methods of treating a subterranean formation with the same. In various embodiments, the present invention provides a method of treating a subterranean formation including obtaining or providing a composition including a scale inhibitor, wherein at least one of A and B is satisfied. In A, the scale inhibitor can include at least one of 1) a copolymer including a repeating unit including at least one sulfonic acid or sulfonate group and a repeating unit including at least two carboxylic acid or carboxylate groups, and 2) a protected scale inhibitor including hydrolyzably-unmaskable coordinating groups. In B, the composition includes an aqueous phase and a lipophilic phase, wherein the lipophilic phase protectively encapsulates the scale inhibitor. The method includes placing the composition in a subterranean formation.

Scale Inhibitor and Methods of Using Scale Inhibitors

Various embodiments disclosed relate to scale inhibitors and methods of treating a subterranean formation with the same. In various embodiments, the present invention provides a method of treating a subterranean formation including obtaining or providing a composition including a scale inhibitor, wherein at least one of A and B is satisfied. In A, the scale inhibitor can include at least one of 1) a copolymer including a repeating unit including at least one sulfonic acid or sulfonate group and a repeating unit including at least two carboxylic acid or carboxylate groups, and 2) a protected scale inhibitor including hydrolyzably-unmaskable coordinating groups. In B, the composition includes an aqueous phase and a lipophilic phase, wherein the lipophilic phase protectively encapsulates the scale inhibitor. The method includes placing the composition in a subterranean formation.

Well cementing

A hydraulic well cementing composition is disclosed. The well cementing composition contains a hydraulic cement and a fluid loss additive. The fluid loss additive is the polymerization reaction product of a two vinylamide monomers, wherein the polymerization reaction is conducted in the presence of a molecular weight control agent. One of the vinylamide monomers includes a sulfonic acid function, the second vinylamide monomer does not include a sulfonic acid function. The fluid loss additive controls fluid loss at temperatures up to 350 F.

Well cementing

A hydraulic well cementing composition is disclosed. The well cementing composition contains a hydraulic cement and a fluid loss additive. The fluid loss additive is the polymerization reaction product of a two vinylamide monomers, wherein the polymerization reaction is conducted in the presence of a molecular weight control agent. One of the vinylamide monomers includes a sulfonic acid function, the second vinylamide monomer does not include a sulfonic acid function. The fluid loss additive controls fluid loss at temperatures up to 350 F.

Tunable Control of Pozzolan-Lime Cement Compositions

Disclosed herein are cement compositions and methods of using cement compositions in subterranean formations. An embodiment discloses a method of formulating a cement composition. The method may comprise measuring surface area of a group of pozzolans, wherein the smallest measured surface area of the group of pozzolans and the largest measured surface area of the group of pozzolans vary by about 50% or greater. The method may further comprise selecting one or more pozzolans from the group of pozzolans. The method may further comprise adding components comprising lime and water to the selected one or more pozzolans to form a cement composition.