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纳米二氧化钛负载凹土催化剂的制备及催化聚酯反应研究
引用本文:李静,崔爱军,何明阳,姚超,陈群.纳米二氧化钛负载凹土催化剂的制备及催化聚酯反应研究[J].精细化工,2012,29(12).
作者姓名:李静  崔爱军  何明阳  姚超  陈群
作者单位:常州大学,常州大学石油化工学院,常州大学,石油化工学院,常州大学,石油化工学院,常州大学石油化工学院
基金项目:江苏省高校自然科学研究重大项目(批准号:11KJA430007)
摘    要:制备了一种以锐钛矿为主的混晶纳米二氧化钛,并将其均匀负载于纳米凹凸棒土(ATP)上,得到了一类纳米复合催化剂,对二氧化钛及复合催化剂分别进行了X-射线衍射和透射电镜表征。利用催化聚酯反应对二氧化钛及多种复合催化剂的性能进行了评价,结果表明:与常规聚酯催化剂Sb2O3相比较,纳米二氧化钛可达到与Sb2O3相近的催化活性,但催化性能不稳定,聚酯产品b值较高;将二氧化钛负载于纳米凹凸棒土表面后,催化活性中心达到了理想的分散,催化性能更加稳定,同时也改善了聚酯的色相,b值从14.05降为8.17。此外,讨论了复合催化剂对聚酯产品物化性能的影响,通过DSC、TGA等测试手段,发现复合催化剂制备的聚酯结晶温度升高,二甘醇含量和热降解性能与常规聚酯相近。

关 键 词:纳米二氧化钛  复合催化剂  凹凸棒土  聚酯
收稿时间:2012/6/29 0:00:00
修稿时间:2012/9/28 0:00:00

The Preparation of Nano-TiO2 Catalyst Supported on Attapulgite and Application Research on Polyester Synthesis
LI Jing,CUI Ai-jun,HE Ming-yang,YAO Chao and CHEN Qun.The Preparation of Nano-TiO2 Catalyst Supported on Attapulgite and Application Research on Polyester Synthesis[J].Fine Chemicals,2012,29(12).
Authors:LI Jing  CUI Ai-jun  HE Ming-yang  YAO Chao and CHEN Qun
Affiliation:School of Petrochemical Engineering,Changzhou University,School of Petrochemical Engineering, Changzhou University,School of Petrochemical Engineering, Changzhou University,School of Petrochemical Engineering,Changzhou University
Abstract:A kind of nano-TiO2 with main structure of anatase crystal was prepared and supported on attapulgite. All these materials were characterized by XRD and TEM. The catalytic performance of the materials were evaluated by the polyester reaction, and the result showed: the catalytic activity of nano-TiO2 is close to Sb2O3, however, the catalytic property is unstable, and the hue b of polyester is larger; after the nano-TiO2 was supported on attapulgite, the catalytic center presented ideal dispersion state, the catalyst property were also more stable, and the hue b of polyester were better (from 14.05 to 8.17). Besides, the physical and chemical properties of the polyester influenced by the TiO2-complex catalyst were discussed by DSC and TGA, the result showed that the crystallization temperature of polyester increased by using TiO2-complex catalyst, and the content of diethylene glycol and the thermal performance were closed to normal polyester.
Keywords:nano-TiO2  Catalyst  Attapulgite  Polyester
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