Preparation method and application of gum rosin acid copper
A technology of copper rosinate and copper salt, applied in the application of copper rosinate in the prevention and control of agricultural diseases and insect pests, and in the field of synthesis of copper rosinate compounds, can solve problems such as not being environmentally friendly, difficult to implement, and complex copper rosinate methods, and achieves the method Simple, Wide Range of Effects
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Embodiment 1
[0047] In a 4000L enamel reaction kettle, add 620Kg rosin and 2200Kg toluene, stir to dissolve the rosin completely, then add the uniform suspension containing 125Kg copper sulfate pentahydrate, 160Kg sodium hydroxide and 400Kg water dropwise to the rosin solution within 30 minutes During the process, the color of the reaction solution gradually turns green. After the addition is completed, the temperature is raised to reflux temperature for dehydration reaction. After the dehydration is completed, the reaction solution is cooled, and impurities are filtered out to obtain a toluene solution of copper rosinate with a detection content of 38%.
Embodiment 2
[0049]In a 2000L enamel reaction kettle, add 300Kg rosin and 1000Kg cyclohexanone, stir to dissolve the rosin completely, and then add a uniform suspension containing 60Kg copper chloride, 168Kg potassium hydroxide, and 200Kg water dropwise to the rosin within 30 minutes. In the solution, the color of the reaction solution gradually turns green. After the dropwise addition, the temperature is raised to the reflux temperature for dehydration reaction. After the dehydration is completed, the reaction solution is cooled, and then the impurities are filtered out to obtain a cyclohexanone solution of copper rosinate with a detection content of 33 %.
Embodiment 3
[0051] In a 1000L enamel reaction kettle, add 160Kg rosin and 480Kg n-butanol, stir to dissolve the rosin completely, and then drop the uniform suspension containing 40Kg copper citrate, 25Kg ammonia water, and 80Kg water into the rosin solution within 30 minutes , the color of the reaction solution gradually turns green, after the dropwise addition is completed, the temperature is raised to the reflux temperature, and the dehydration reaction is performed. After the dehydration is completed, the reaction solution is cooled, and then the impurities are filtered out to obtain a n-butanol solution of copper rosinate, with a detection content of 45%.
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