A kind of fracturing acidification nanoemulsion drainage aid and preparation method thereof
A technology of nanoemulsion, fracturing and acidification, which is applied in the direction of chemical instruments and methods, drilling compositions, etc., and can solve problems such as insurmountable water lock damage
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Embodiment 1
[0029] This embodiment provides a concentrated solution of a fracturing acidification nanoemulsion drainage aid. In terms of weight percentage, its raw material composition includes:
[0030] D-limonene oil 45%, nonionic surfactant isomerized tridecanol polyoxypropylene (4) polyoxyethylene (6) ether 35%, isopropanol 8%, oleic acid amine 2.6%, oleic acid 1.3%, The balance is water.
[0031] The concentrate is prepared by the following steps:
[0032] Mix D-limonene oil, non-ionic surfactant isomerized tridecanol polyoxypropylene (4) polyoxyethylene (6) ether, isopropanol, oleic acid amine, and oleic acid, and then add water to balance to 100%, Mix well to obtain a concentrated solution.
Embodiment 2
[0034] This embodiment provides a fracturing acidified nanoemulsion drainage aid, which is a uniform transparent or light blue nanoemulsion obtained by diluting the concentrated solution of Example 1 with KCl water with a concentration of 2wt%. The amount of the concentrated solution The size of the nanoemulsion is 0.2wt%. The size of the nanoemulsion is measured by dynamic laser scattering: the diameter of the liquid particles is between 20-100 nanometers.
Embodiment 3
[0036] Flowback efficiency test:
[0037] Using the nanoemulsion of Example 2 as a drainage aid, 20-40 mesh quartz sand was filled into a 25cm long and 2.5cm diameter sand-filled tube, and it was shaken up and down 200 times to keep the permeability basically the same every time. The nanoemulsion to be tested is injected into the sand-filled tube, the lower valve is opened, and the liquid flows out under the action of gravity, and the amount of outflow liquid is recorded. The flowback efficiency is calculated to be 76%.
[0038] In comparison, the flowback efficiency of water without nanoemulsion is 57%, and the flowback efficiency of water without fatty acid and fatty amine is 70%. It can be seen that adding fatty acid and fatty amine can further improve the flowback rate of nanoemulsion.
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