Method for reducing acid value of novel plant insulating oil
A plant insulating oil and a new type of plant technology, applied in the treatment field of acid value reduction in recycling, can solve the problems of increasing post-processing difficulty, increasing cost, accelerating hydrolysis, etc., achieving low production cost, saving production cost, and short reaction time Effect
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Embodiment 1
[0020] Weigh 4 g of 100-200 mesh basic alumina, add it to 100 g of vegetable insulating oil, and stir evenly. React at 50°C for 2 hours. Cool to room temperature, filter under reduced pressure, and the filtrate is the product. Using the GB7599-87 standard method, the acid value of the product after the reaction is 0.013 mg / g KOH, and the acid value before the reaction is 0.160 mg / g KOH. Breakdown voltage: before reaction: 25.5KV; after reaction: 22.0KV. The product recovery rate is 95.34%.
Embodiment 2
[0022] Weigh 2 g of 100-200 mesh basic alumina, add it to 100 g of vegetable insulating oil, and stir evenly. React at 60°C for 2 hours. Cool to room temperature, filter under reduced pressure, and the filtrate is the product. Using the GB7599-87 standard method, the acid value of the product after the reaction is 0.022 mg / g KOH, and the acid value before the reaction is 0.160 mg / g KOH. Breakdown voltage: before reaction: 25.5KV; after reaction: 26.0KV. The product recovery rate is 96.79%.
Embodiment 3
[0024] Weigh 2 g of 100-200 mesh basic alumina, add it to 100 g of vegetable insulating oil, and stir evenly. React at 40°C for 2 hours. Cool to room temperature, filter under reduced pressure, and the filtrate is the product. Using the GB7599-87 method, the acid value of the product after the reaction is 0.036 mg / g KOH, and the acid value before the reaction is 0.160 mg / g KOH. Breakdown voltage: before reaction: 25.5KV; after reaction: 29.3KV. The product recovery rate is 97.44%.
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