Patent classifications
C08F226/04
DIVERTING AGENT AND METHOD OF FILLING FRACTURE IN WELL USING SAME
An object of the present invention is to provide a diverting agent that exhibits sufficient filling properties against a fracture in a well because of swelling without completely dissolution for a certain period of time (about 30 minutes to 5 hours), and that quickly dissolves and be removed even at a low temperature of 40° C. to 60° C. after a certain period of time has passed. The present invention relates to a diverting agent containing a modified polyvinyl alcohol-based resin.
Cationic polymers and porous materials
According to one or more embodiments, cationic polymers may be produced which include one or more monomers containing cations. Such cationic polymers may be utilized as structure directing agents to for mesoporous zeolites. The mesoporous zeolites may include micropores as well as mesopores, and may have a surface area of greater than 350 m.sup.2/g and a pore volume of greater than 0.3 cm.sup.3/g. Also described are core/shell zeolites, where at least the shell portion includes a mesoporous zeolite material.
Cationic polymers and porous materials
According to one or more embodiments, cationic polymers may be produced which include one or more monomers containing cations. Such cationic polymers may be utilized as structure directing agents to for mesoporous zeolites. The mesoporous zeolites may include micropores as well as mesopores, and may have a surface area of greater than 350 m.sup.2/g and a pore volume of greater than 0.3 cm.sup.3/g. Also described are core/shell zeolites, where at least the shell portion includes a mesoporous zeolite material.
Cationic polymers and porous materials
According to one or more embodiments, cationic polymers may be produced which include one or more monomers containing cations. Such cationic polymers may be utilized as structure directing agents to for mesoporous zeolites. The mesoporous zeolites may include micropores as well as mesopores, and may have a surface area of greater than 350 m.sup.2/g and a pore volume of greater than 0.3 cm.sup.3/g. Also described are core/shell zeolites, where at least the shell portion includes a mesoporous zeolite material.
Environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, preparation method thereof and the water-based drilling fluid
The present disclosure provides a preparation method of an environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, the preparation method comprises the following steps: mixing and emulsifying a styrene monomer, an acrylic monomer and an emulsifier MS-1 aqueous solution to prepare a pre-polymerization emulsion; dispersing hydrophilic monomer, cationic monomer and an emulsifier MS-1 in water, adjusting the pH to be within a range of 6.5-8.5, then adding mixed monomers of the styrene monomer and acrylic monomer to blend and emulsify to prepare a post-polymerization emulsion; adding a first cross-linking agent and a first initiator into the pre-polymerization emulsion, uniformly dispersing the mixture and carrying out reaction; subsequently dropwise adding the post-polymerization emulsion, adding a second cross-linking agent and a second initiator, uniformly dispersing the mixture and then continuously carrying out reaction, drying and crushing the reaction product to prepare the plugging anti-sloughing agent.
Environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, preparation method thereof and the water-based drilling fluid
The present disclosure provides a preparation method of an environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, the preparation method comprises the following steps: mixing and emulsifying a styrene monomer, an acrylic monomer and an emulsifier MS-1 aqueous solution to prepare a pre-polymerization emulsion; dispersing hydrophilic monomer, cationic monomer and an emulsifier MS-1 in water, adjusting the pH to be within a range of 6.5-8.5, then adding mixed monomers of the styrene monomer and acrylic monomer to blend and emulsify to prepare a post-polymerization emulsion; adding a first cross-linking agent and a first initiator into the pre-polymerization emulsion, uniformly dispersing the mixture and carrying out reaction; subsequently dropwise adding the post-polymerization emulsion, adding a second cross-linking agent and a second initiator, uniformly dispersing the mixture and then continuously carrying out reaction, drying and crushing the reaction product to prepare the plugging anti-sloughing agent.
ENVIRONMENT-FRIENDLY HIGH-TEMPERATURE RESISTANT WATER-BASED DRILLING FLUID PLUGGING ANTI-SLOUGHING AGENT, PREPARATION METHOD THEREOF AND THE WATER-BASED DRILLING FLUID
The present disclosure provides a preparation method of an environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, the preparation method comprises the following steps: mixing and emulsifying a styrene monomer, an acrylic monomer and an emulsifier MS-1 aqueous solution to prepare a pre-polymerization emulsion; dispersing hydrophilic monomer, cationic monomer and an emulsifier MS-1 in water, adjusting the pH to be within a range of 6.5-8.5, then adding mixed monomers of the styrene monomer and acrylic monomer to blend and emulsify to prepare a post-polymerization emulsion; adding a first cross-linking agent and a first initiator into the pre-polymerization emulsion, uniformly dispersing the mixture and carrying out reaction; subsequently dropwise adding the post-polymerization emulsion, adding a second cross-linking agent and a second initiator, uniformly dispersing the mixture and then continuously carrying out reaction, drying and crushing the reaction product to prepare the plugging anti-sloughing agent.
ENVIRONMENT-FRIENDLY HIGH-TEMPERATURE RESISTANT WATER-BASED DRILLING FLUID PLUGGING ANTI-SLOUGHING AGENT, PREPARATION METHOD THEREOF AND THE WATER-BASED DRILLING FLUID
The present disclosure provides a preparation method of an environment-friendly high-temperature resistant water-based drilling fluid plugging anti-sloughing agent, the preparation method comprises the following steps: mixing and emulsifying a styrene monomer, an acrylic monomer and an emulsifier MS-1 aqueous solution to prepare a pre-polymerization emulsion; dispersing hydrophilic monomer, cationic monomer and an emulsifier MS-1 in water, adjusting the pH to be within a range of 6.5-8.5, then adding mixed monomers of the styrene monomer and acrylic monomer to blend and emulsify to prepare a post-polymerization emulsion; adding a first cross-linking agent and a first initiator into the pre-polymerization emulsion, uniformly dispersing the mixture and carrying out reaction; subsequently dropwise adding the post-polymerization emulsion, adding a second cross-linking agent and a second initiator, uniformly dispersing the mixture and then continuously carrying out reaction, drying and crushing the reaction product to prepare the plugging anti-sloughing agent.
Cationic polymers and porous materials
According to one or more embodiments, cationic polymers may be produced which include one or more monomers containing cations. Such cationic polymers may be utilized as structure directing agents to for mesoporous zeolites. The mesoporous zeolites may include micropores as well as mesopores, and may have a surface area of greater than 350 m.sup.2/g and a pore volume of greater than 0.3 cm.sup.3/g. Also described are core/shell zeolites, where at least the shell portion includes a mesoporous zeolite material.
Cationic polymers and porous materials
According to one or more embodiments, cationic polymers may be produced which include one or more monomers containing cations. Such cationic polymers may be utilized as structure directing agents to for mesoporous zeolites. The mesoporous zeolites may include micropores as well as mesopores, and may have a surface area of greater than 350 m.sup.2/g and a pore volume of greater than 0.3 cm.sup.3/g. Also described are core/shell zeolites, where at least the shell portion includes a mesoporous zeolite material.