Wang Hong Juan, Rong Min Zhi, Zhang Ming Qiu, Hu Jing, Chen Hui Wen, Czigány Tibor
Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, OFCM Institute, School of Chemistry and Chemical Engineering, Zhongshan University, Guangzhou 510275, People's Republic of China.
Biomacromolecules. 2008 Feb;9(2):615-23. doi: 10.1021/bm7009152. Epub 2007 Dec 29.
In this work, a simple but effective approach was proposed for preparing biodegradable plastic foams with a high content of castor oil. First of all, castor oil reacted with maleic anhydride to produce maleated castor oil (MACO) without the aid of any catalyst. Then plastic foams were synthesized through free radical initiated copolymerization between MACO and diluent monomer styrene. With changes in MACO/St ratio and species of curing initiator, mechanical properties of MACO foams can be easily adjusted. In this way, biofoams with comparable compressive stress at 25% strain as commercial polyurethane (PU) foams were prepared, while the content of castor oil can be as high as 61 wt %. The soil burial tests further proved that the castor oil based foams kept the biodegradability of renewable resources despite the fact that some petrol-based components were introduced.
在这项工作中,提出了一种简单但有效的方法来制备蓖麻油含量高的可生物降解塑料泡沫。首先,蓖麻油与马来酸酐反应生成马来化蓖麻油(MACO),无需任何催化剂的帮助。然后通过MACO与稀释单体苯乙烯之间的自由基引发共聚反应合成塑料泡沫。随着MACO/St比例和固化引发剂种类的变化,MACO泡沫的机械性能可以很容易地调节。通过这种方式,制备出了在25%应变下具有与商业聚氨酯(PU)泡沫相当的压缩应力的生物泡沫,同时蓖麻油含量可高达61 wt%。土壤掩埋试验进一步证明,尽管引入了一些石油基成分,但基于蓖麻油的泡沫仍保持了可再生资源的生物降解性。