Composition with selective water blocking function and its preparation method and application
A composition and selective technology, applied in the directions of drilling compositions, chemical instruments and methods, can solve problems such as poor selectivity, reducing oil phase permeability, restricting oil well water plugging, etc.
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[0037] In the second aspect, the present invention also provides a method for preparing a composition with selective water blocking function, the method comprising: mixing an oil-soluble resin, a main emulsifier and a surface-active polymer with water.
[0038] In the present invention, the material with selective water blocking function can be obtained by mixing the above-mentioned components, but mixing the components in a certain order can further improve its water blocking performance, therefore, in a preferred implementation of the present invention In the mode, the present invention also provides a preparation method of a composition having a selective water blocking function, the preparation method comprising the following steps:
[0039] (1) mixing the surface-active polymer with water to form an aqueous solution;
[0040] (2) mixing the main emulsifier with the aqueous solution to form an emulsion;
[0041] (3) mixing the oil-soluble resin with the emulsion;
[0042...
Embodiment 1
[0075] This example is used to illustrate the composition with selective water blocking function provided by the present invention.
[0076] 1. Weigh 0.03g of surface-active polymer and add it to 100mL of water, and fully stir (600r / min) at 20°C for 1 hour to form an aqueous solution;
[0077] 2. Weigh 1g of sodium dodecylbenzene sulfonate and 0.5g of Span 60 into the above aqueous solution in turn, and stir fully at 20°C (600r / min) for 3 hours to form a stable emulsion;
[0078] 3. Weigh 1g of oil-soluble phenolic resin (particle size 3-50μm) and add it to the above-mentioned emulsion, and fully stir (600r / min) at 20°C for 1 hour to form a stable emulsion-suspended water blocking material A1.
[0079] After testing, under the conditions of high temperature (90°C) and high salt (salinity: 50,000mg / L), the water shutoff rate of water shutoff material A1 is 94.21%, the oil shutoff rate is 4.52%, and the erosion resistance multiple is greater than 50PV . This shows that the wat...
Embodiment 2
[0081] This example is used to illustrate the composition with selective water blocking function provided by the present invention.
[0082] 1. Weigh 0.01g of surface-active polymer and add it to 100mL of water, and fully stir (600r / min) at 20°C for 6h to form an aqueous solution;
[0083] 2. Weigh 5g of sodium dodecylsulfonate and 1g of Tween 60, respectively, and add them to the above aqueous solution in turn, and stir at 30°C (600r / min) for 1 hour to form a stable emulsion;
[0084] 3. Weigh 10g of petroleum resin (particle size: 3-50μm) and add it to the above emulsion. After fully stirring (600r / min) at 50°C for 2 hours, a stable emulsion-suspended water blocking material A2 is formed.
[0085] After testing, under the conditions of high temperature (90°C) and high salt (salinity: 80,000mg / L), the water shutoff rate of water shutoff material A2 is 99.23%, the oil shutoff rate is 5.62%, and the erosion resistance multiple is greater than 50PV . This shows that the water ...
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Abstract
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