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Preparation of dipentaerythritol-combined layered double hydroxide particle and its thermostabilizing effect for polyvinyl chloride

机译:二季戊四醇复合层状双氢氧化物颗粒的制备及其对聚氯乙烯的热稳定作用

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In recent years, layered double hydroxide (LDH) well-known as hydrotalcite-like compound has received considerable attention due to its potential technological applications such as antacid, anion-exchangers, stabilizers and reinforcing fillers for synthetic or natural organic polymers. On the other hand, one of polyhydric alcohols, dipentaerythritol (Dpe), is known as a typical component of polyvinyl chloride (PVC) stabilizer. In this study, we attempted the intercalation of Dpe into a carbonated Mg-Al LDH (the Mg-Al/CO3/LDH) interlayer by the thermal reaction using molten guest substance to develop a new effective thermostabilizer for PVC resin. During the thermal reaction at 200-235 degrees C, the decarboxylation and dehydration of the Mg-Al LDH proceeded and the solid product at 235 degrees C after 3 h was found to be the most disordered structure, not the Dpe-intercalated LDH. The results of FT-IR, TG-DTA, and chemical analysis exhibited that the solid product was the aggregate of the disordered LDH particles covering with Dpe molecule (Mg-Al LDH-Dpe composite) and a small amount of the Mg-Al/OH/LDH. Next, we prepared the PVC sheet by loading the solid product or various kinds of additives into PVC paste resin with dioctyl phthalate and etc. by molding and subsequently by heating. In the heat-resistance test of the resulted PVC sheets at 180 degrees C for 2 h, the PVC sheet loaded with the solid product showed the longest heat-resistance in all the cases. It also exhibited the best results in each the hardness and elongation tests of the PVC sheet recovered after the heat-resistance test. Although we could not prepare the Dpe-intercalated LDH, the Mg-Al LDH-Dpe composite exhibiting the expectable ability as thermostabilizer for PVC resin was obtained in this study.
机译:近年来,众所周知的层状双氢氧化物(LDH)由于其潜在的技术应用,例如用于合成或天然有机聚合物的抗酸剂,阴离子交换剂,稳定剂和增强填料,而广受关注。另一方面,二元季戊四醇(Dpe)是多元醇之一,是聚氯乙烯(PVC)稳定剂的典型组分。在这项研究中,我们尝试通过使用熔融客体物质的热反应将Dpe嵌入碳酸Mg-Al LDH(Mg-Al / CO3 / LDH)中间层中,从而开发出一种新型的有效的PVC树脂热稳定剂。在200-235摄氏度的热反应过程中,Mg-Al LDH的脱羧和脱水过程继续进行,发现3小时后在235摄氏度的固体产物是最无序的结构,而不是Dpe嵌入的LDH。 FT-IR,TG-DTA和化学分析的结果表明,固体产物是由Dpe分子(Mg-Al LDH-Dpe复合材料)覆盖的无序LDH颗粒和少量Mg-Al /的聚集体。 OH / LDH。接下来,我们通过模制然后加热将固体产物或各种添加剂与邻苯二甲酸二辛酯等一起装入PVC糊状树脂中来制备PVC片材。在所得的PVC片材在180℃下进行2小时的耐热性测试中,负载有固体产物的PVC片材在所有情况下均显示出最长的耐热性。在耐热性试验后回收的PVC片材的每次硬度和伸长率试验中,它也表现出最好的结果。尽管我们无法制备Dpe插入的LDH,但在本研究中获得了显示出可预期的PVC树脂热稳定剂性能的Mg-Al LDH-Dpe复合材料。

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