Lubricating oil additive as well as preparation method and application thereof
A lubricating oil additive and lubricating oil technology, applied in additives, lubricating compositions, petroleum industry, etc., can solve the problems of fluorine-containing lubricating oil application limitations, inability to dissolve well, and inability to achieve anti-rust effects, etc. Anti-rust operation effect, increase operation effect and service life, and anti-rust performance improvement effect
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Embodiment 1
[0035] (1) Preparation of perfluoropolyetheryl fluoride
[0036] Add hexafluoropropylene into the photooxidation reactor at a rate of 0.1kg / h, and oxygen at a rate of 100L / h, cool down the mixed hexafluoropropylene and oxygen to -70°C, and then turn on the ultraviolet lamp to irradiate and perform photooxidation. The reaction is initiated to obtain perfluoropolyetheryl fluoride as shown in formula (II).
[0037] (2) Separation of perfluoropolyether fluoride
[0038] Take 5kg of perfluoropolyetheryl fluoride prepared in step (1) and add it to the still, turn on the vacuum pump, keep the pressure of the distillation system at 40±5mmHg, heat up, and collect the distillate at 200°C to 250°C for later use. The obtained perfluoropolyetheryl fluoride The etheroyl fluoride fraction has a molecular weight of 3200 to 4800.
[0039] (3) Preparation of imidazoline intermediates
[0040] Add 500ml of solvent xylene, 1000g of benzoic acid and 800g of diethylenetriamine to a 3L reactor, p...
Embodiment 2
[0047] (1) Preparation of perfluoropolyetheryl fluoride
[0048] Add hexafluoropropylene into the photooxidation reactor at a rate of 1kg / h, and oxygen at a rate of 550L / h, cool down the mixed hexafluoropropylene and oxygen to -50°C, and then turn on the ultraviolet lamp for photoinitiation reaction to obtain perfluoropolyetheryl fluoride as shown in formula (II).
[0049] (2) Separation of perfluoropolyether fluoride
[0050] With embodiment 1.
[0051] (3) Preparation of imidazoline intermediates
[0052] Add solvent xylene 3L, benzoic acid 3110g and diethylenetriamine 1300g to a 10L reactor, pass nitrogen protection, stirring speed 50r / min, heat up to 100°C, stop stirring and heating after reacting for 5h, cool to room temperature, and then remove the solvent xylene by distillation to obtain the imidazoline intermediate as shown in formula (Ⅲ).
[0053] (4) Preparation of lubricating oil additives
[0054] Take 100g of the imidazoline intermediate obtained in step (3) ...
Embodiment 3
[0059] (1) Preparation of perfluoropolyetheryl fluoride
[0060] Add hexafluoropropylene into the photooxidation reactor at a rate of 5kg / h, add oxygen at a rate of 3500L / h, cool down the mixed hexafluoropropylene and oxygen to -40°C, and then turn on the ultraviolet lamp for photoinitiation reaction to obtain perfluoropolyetheryl fluoride as shown in formula (II).
[0061] (2) Separation of perfluoropolyether fluoride
[0062] With embodiment 1.
[0063] (3) Preparation of imidazoline intermediates
[0064] Add solvent xylene 10L, benzoic acid 6700g and diethylenetriamine 11200g to a 50L reactor, pass nitrogen protection, stirring speed 50r / min, heat up to 160°C, stop stirring and heating after reacting for 12h, cool to room temperature, and then remove the solvent xylene by distillation to obtain the imidazoline intermediate as shown in formula (Ⅲ).
[0065] (4) Preparation of lubricating oil additives
[0066] Take 4Kg of the imidazoline intermediate obtained in step (...
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