Regeneration method of waste oil
A technology of waste grease and waste oil, which is applied in chemical instruments and methods, preparation of organic compounds, organic chemistry, etc., can solve problems such as food waste oil pollution, difficulty in sanitation work, and blockage of sewage pipe network, so as to achieve wide application and avoid Pollution problem, effect of reducing raw material cost
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Embodiment 1
[0016] A kind of regeneration method of waste oil of the present embodiment comprises the following steps:
[0017] Step 1 Pretreatment process of waste oil
[0018] After heating the swill oil to 60°C, filter it with a sand core to remove impurities such as soil, food residues, detergents, etc., then use vacuum distillation at 110°C to remove the water in the oil, and finally, add acid clay for Adsorption and decolorization can obtain the treated swill oil.
[0019] The second step is the synthesis process of waste oil-based polyol
[0020] Stir and mix the pretreated swill oil and 3-amino-1,2-propanediol, control the mass ratio of waste oil to amino alcohol to 1:0.5, heat and stir at 140°C for 3 h, and distill under reduced pressure to remove the by-products. The product water was cooled, and the insolubles were filtered out to obtain swill oil 3-amino-1,2-propanediol polyol with a hydroxyl value of 283 mgKOH / g.
[0021] This embodiment has the following characteristics: ...
Embodiment 2
[0023] A kind of regeneration method of waste oil of the present embodiment comprises the following steps:
[0024] Step 1 Pretreatment process of waste oil
[0025] After heating the waste frying oil to 60°C, filter it with a sand core to remove impurities such as soil, food residues, detergents, etc., and then use vacuum distillation at 110°C to remove the moisture in the oil, and finally, add acid The white clay is adsorbed and decolorized to obtain the treated waste oil for frying.
[0026] The second step is the synthesis process of waste oil-based polyol
[0027] Stir and mix the pretreated waste oil from frying with tris(hydroxymethyl)aminomethane, control the mass ratio of waste oil to amino alcohol to 1:0.4, heat and stir at 160°C for 12 h, then distill under reduced pressure The by-product is cooled in water, and the insoluble matter is filtered out to obtain the tris(hydroxymethyl)aminomethane polyol product of frying waste oil, with a hydroxyl value of 325 mgKOH / ...
Embodiment 3
[0030] A kind of regeneration method of waste oil of the present embodiment comprises the following steps:
[0031] Step 1 Pretreatment process of waste oil
[0032] After heating the waste oil to 60°C, filter it with a sand core to remove impurities such as soil, food residues, detergents, etc., and then use a vacuum distillation method at 110°C to remove the water in the oil, and finally, add acid white clay for cleaning. Adsorption decolorization, that is, the treated waste oil.
[0033] The second step is the synthesis process of waste oil-based polyol
[0034] Stir and mix the pretreated waste oil and 3,4-pyrrolidinediol, control the mass ratio of waste oil to amino alcohol to 1:0.7, heat and stir at 120°C for 15 hours, and distill off the by-product water under reduced pressure After cooling, the insolubles were filtered off to obtain the waste oil 3,4-pyrrolidinediol polyol product with a hydroxyl value of 343 mgKOH / g.
[0035] This embodiment has the following chara...
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Abstract
Description
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