首页> 外国专利> BIOPLASTICIZERS OR PRIMARY OLEOCHEMICAL PLASTICIZERS WITH THERMAL AND ULTRAVIOLET RADIATION STABILIZING ACTIVITY FOR PVC MOULDING RESINS AND PROCESS FOR OBTAINING THEREOF.

BIOPLASTICIZERS OR PRIMARY OLEOCHEMICAL PLASTICIZERS WITH THERMAL AND ULTRAVIOLET RADIATION STABILIZING ACTIVITY FOR PVC MOULDING RESINS AND PROCESS FOR OBTAINING THEREOF.

机译:具有用于PVC模制树脂的热和紫外线辐射稳定活性的生物增塑剂或主要油脂化学增塑剂,以及获得其的方法。

摘要

The present invention is related with bioplasticizers or primary oleochemical plasticizers and the improved process for obtaining thereof. It refers primarily to epoxydized oleochemical plasticizers produced from vegetable oils, as substitute of traditional petrochemical plasticizers. The process starts with the epoxydized product of natural oils, such as sunflower, linseed, Jatropha curcas, soybean, etc., which are transesterified with an alcohol such as ethylic or methylic, in the presence of a catalyst such as sodium methoxide or sodium hydroxide in order to produce an alkylic esters mixture of the fatty acids that were present in the oil or oil mixture used as raw material in the epoxydized oil production. When the plasticizer obtained by the process already mentioned is used for the formulation of moldable poly(vinyl chloride), PVC, resins; the resulting plastic films get adequate hardness, static and dynamic thermal stability, and plasticizer extractability by solvents, such as n-hexane, gasoline and oil. Besides, when the PVC resin is formulated with a phthalic or terephthalic plasticizers mixture and the bioplasticizer, the bioplasticizer presents a full range solubility and or compatibility with the remainder of the resin compounds. The oxyrane chemical ring of the bioplasticizer is an excellent chemical neutralizer of the HCL that might be formed from the PVC, due to the action or interference of thermal or UV radiation.
机译:本发明涉及生物增塑剂或伯油化学增塑剂及其获得的改进方法。它主要是指由植物油生产的环氧化油脂化学增塑剂,替代传统的石油化学增塑剂。该方法开始于天然油的环氧化产物,例如向日葵油,亚麻籽油,麻风树,大豆等,其在催化剂如甲醇钠或氢氧化钠的存在下与醇如乙醇或甲醇进行酯交换反应。为了生产脂肪酸的烷基酯混合物,该脂肪酸存在于用作环氧化油生产原料的油或油混合物中。当将通过上述方法获得的增塑剂用于可模塑聚氯乙烯,PVC,树脂的配制时;所得的塑料薄膜具有足够的硬度,静态和动态热稳定性,以及被正己烷,汽油和石油等溶剂萃取的增塑剂的能力。此外,当PVC树脂与邻苯二甲酸或对苯二甲酸增塑剂混合物和生物增塑剂一起配制时,生物增塑剂表现出全范围的溶解度和/或与其余树脂化合物的相容性。由于热或紫外线辐射的作用或干扰,生物增塑剂的氧烷化学环是HCL的出色化学中和剂,它可由PVC形成。

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