Fracturing fluid resistant to low pH value environment and high salinity and preparation method thereof
A technology of salinity and fracturing fluid, applied in the field of fracturing fluid, can solve the problem of high pH usage limitation, and achieve the effect of reducing residue content and reducing damage
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Embodiment 1
[0054] At room temperature, 1.5 g of erucamidopropyl dimethylamine, 0.2 g of propylene glycol ether, and 0.8 g of glacial acetic acid were mixed to form a liquid component. When using, dissolve 0.2g of polyethylene oxide in 100g of water first, then pour the liquid components into the solution, stir for 2-3min to form acid-resistant fracturing fluid, at pH 7, the shear rate is 100s -1 The viscosity is 120mPa.s at 120 mPa.s, and the viscosity of 90mPa.s can still be obtained when the pH is lowered to 3.
Embodiment 2
[0056] At room temperature, 1.5 g of erucamidopropyl dimethylamine, 0.3 g of propylene glycol methyl ether, and 0.4 g of phosphoric acid were mixed to form a liquid component. When using, dissolve 0.2g of polyethylene oxide in 100g of water first, then pour the liquid components into the solution, stir for 2-3min to form acid-resistant fracturing fluid, at pH 7, the shear rate is 100s -1 The viscosity is 110mPa.s when the pH is reduced to 3, and the viscosity of 85mPa.s can still be obtained.
Embodiment 3
[0058] At room temperature, 1.5 g of tetradecyl dimethyl amine oxide, 0.3 g of propylene glycol ether, and 0.2 g of glacial acetic acid were mixed to form a liquid component. When using, dissolve 0.4g of polyethylene oxide in 100g of water first, then pour the liquid components into the solution, stir for 2-3min to form acid-resistant fracturing fluid, and the shear rate is 100s at pH 7 -1 The viscosity is 140mPa.s at the time, and the viscosity of 95mPa.s can still be obtained when the pH is lowered to 3.
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