Complex acid catalyst for producing biodiesel from acidified oil and production method of biodiesel
A biodiesel, production method technology, applied in organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, chemical instruments and methods, etc. Large energy consumption and other problems, to achieve the effects of wide adaptability of raw materials, short reaction time, and low production energy consumption
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Embodiment 1
[0011] 1. Add 100kg of soybean acidified oil (acid value 140mgKOH / g) into the reactor, add 3kg of composite acid catalyst (dissolved in 10kg of methanol in advance), and the composite acid catalyst according to concentrated sulfuric acid: concentrated phosphoric acid: linear alkylbenzenesulfonate Acid = mixed with a mass ratio of 4:1:1, 20kg of methanol was added, the reaction temperature was 72°C, the reaction was 6h, and the acid value was 1.1mgKOH / g;
[0012] 2. Recover excess methanol by distillation, add 2.0% to 10% sodium carbonate dilute solution to the product of step 1 to neutralize the composite acid catalyst, add 0.5% industrial salt solution, wash with water 2 to 3 times until neutral, and let stand to separate layer, the upper layer is fatty acid methyl ester, and the lower layer is glycerol saline;
[0013] 3. Drain the lower layer of glycerol brine, and enter the molecular distillation column after the upper layer of fatty acid methyl ester is flash dehydrated t...
Embodiment 2
[0015] 1. Add 100kg cottonseed acidified oil (acid value 120mgKOH / g) into the reaction kettle, add 4kg of composite acid catalyst (dissolved in 10kg methanol in advance), composite acid catalyst according to concentrated sulfuric acid: concentrated phosphoric acid: linear alkyl benzene sulfonate Acid = mixed with a mass ratio of 4:1:1, add 20kg of methanol, react at a temperature of 75°C, react for 6h, and the acid value is 1.2mgKOH / g;
[0016] 2. Recover excess methanol by distillation, add 2.0% to 10% sodium carbonate dilute solution to the product of step 1 to neutralize the composite acid catalyst, add 0.5% industrial salt solution, wash with water 2 to 3 times until neutral, and let stand to separate layer, the upper layer is fatty acid methyl ester, and the lower layer is glycerol saline;
[0017] 3. Drain the lower layer of glycerol brine, and enter the molecular distillation column after the upper layer of fatty acid methyl ester is flash dehydrated to obtain refined f...
Embodiment 3
[0019] 1, add 100kg soapstock acidified oil (acid value 160mgKOH / g) in reactor, add composite acid catalyst 3kg (dissolve in 10kg methanol in advance), composite acid catalyst according to concentrated sulfuric acid: concentrated phosphoric acid: linear alkylbenzene Sulfonic acid = 3:1:1 mass ratio mixed, add 20kg methanol, reaction temperature 71°C, react for 5h, the acid value is 0.9mgKOH / g;
[0020] 2. Recover excess methanol by distillation, add 2.0% to 10% sodium carbonate dilute solution to the product of step 1 to neutralize the composite acid catalyst, add 0.5% industrial salt solution, wash 2 to 3 times with water until neutral, and let stand to separate layer, the upper layer is fatty acid methyl ester, and the lower layer is glycerol saline;
[0021] 3. Drain the lower layer of glycerol brine, and enter the molecular distillation column after the upper layer of fatty acid methyl ester is flash dehydrated to obtain refined fatty acid methyl ester, i.e. 91.2 kg of bio...
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Abstract
Description
Claims
Application Information
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