A preparation method of sponge aluminum-based composite material for oil and gas separation
A composite material, sponge aluminum technology, applied in the field of oil and gas separation and treatment, can solve problems such as difficulty in achieving high efficiency, low energy consumption, high oil and gas recovery rate, complex oil and gas separation equipment, and cumbersome oil and gas separation process, and achieve excellent super-phobicity. Oil-super-aerophilic properties, high-throughput industrial oil-gas separation, high porosity effect
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[0029] refer to figure 1 , the invention provides a method for preparing a sponge aluminum-based composite material for oil and gas separation, comprising the following steps:
[0030] Step [1] from the sponge aluminum matrix Al 2 o 3 The formation of the periodic nodular CoEr nanofibers supported by the membrane specifically includes the following operations:
[0031] a1. Sponge aluminum-based periodic nodular multi-nanoporous Al 2 o 3 Membrane preparation: Add trifluoromethanesulfonic acid, peracetic acid and potassium hydrogen phthalate into deionized water, and mix uniformly to form an electrochemical oxidation treatment solution; the concentration of trifluoromethanesulfonic acid in the electrochemical oxidation treatment solution is 75-140g / L, the concentration of peracetic acid is 12-30g / L, the concentration of potassium hydrogen phthalate is 34-62g / L;
[0032] Using sponge metal aluminum as the anode and stainless steel as the cathode, the sponge aluminum-based pe...
Embodiment 1
[0043] Preferred Embodiment 1 of the present invention provides a method for preparing a sponge aluminum-based composite material for oil and gas separation, comprising the following steps:
[0044] Step [1] from the sponge aluminum matrix Al 2 o 3 The formation of the periodic nodular CoEr nanofibers supported by the membrane specifically includes the following operations:
[0045] a1. Sponge aluminum-based periodic nodular multi-nanoporous Al 2 o 3 Membrane preparation: Add trifluoromethanesulfonic acid, peracetic acid and potassium hydrogen phthalate into deionized water, and mix uniformly to form an electrochemical oxidation treatment solution; the concentration of trifluoromethanesulfonic acid in the electrochemical oxidation treatment solution is 80g / L, the concentration of peracetic acid is 20g / L, and the concentration of potassium hydrogen phthalate is 40g / L;
[0046] Using sponge metal aluminum as the anode and stainless steel as the cathode, the sponge aluminum-b...
Embodiment 2
[0078] Preferred embodiment 2 of the present invention provides a method for preparing a sponge aluminum-based composite material for oil and gas separation, comprising the following steps:
[0079] Step [1] from the sponge aluminum matrix Al 2 o 3 The formation of the periodic nodular CoEr nanofibers supported by the membrane specifically includes the following operations:
[0080] a1. Sponge aluminum-based periodic nodular multi-nanoporous Al 2 o 3 Membrane preparation: Add trifluoromethanesulfonic acid, peracetic acid and potassium hydrogen phthalate into deionized water, and mix uniformly to form an electrochemical oxidation treatment solution; the concentration of trifluoromethanesulfonic acid in the electrochemical oxidation treatment solution is 78g / L, the concentration of peracetic acid is 15g / L, and the concentration of potassium hydrogen phthalate is 36g / L;
[0081] Using sponge metal aluminum as the anode and stainless steel as the cathode, the sponge aluminum-b...
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