Laboratory of Plastics and Rubber Technology, Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics, P.O. Box 91, H-1521 Budapest, Hungary.
Chemosphere. 2013 Sep;93(2):408-14. doi: 10.1016/j.chemosphere.2013.05.019. Epub 2013 Jun 13.
Recycled polypropylene (rPP) was recovered from an industrial shredder and composites were prepared with a relatively wide range of wood content and with two coupling agents, a maleated PP (MAPP) and a maleated ethylene-propylene-diene elastomer (MAEPDM). The mechanical properties of the composites showed that the coupling agents change structure only slightly, but interfacial adhesion quite drastically. The durability of the materials was determined by exposing them to a range of fungi and, ecotoxicity was studied on the aquatic organism Vibrio fischeri. The composites generally exhibit low acute toxicity, with values below the levels considered to have direct ecotoxic effect on aquatic ecosystems (<2 toxic units). Their toxicity to V. fischeri depended on the presence of the coupling agents with larger E50 values in 24-h aqueous extracts from composites containing MAPP or MAEPDM in comparison to composites without any coupling agent. Evaluation of resistance against fungal colonization and deterioration proved that wood facilitates fungal colonization. Fungi caused slight mass loss (below 3%) but it was not correlated with substantial deterioration in material properties. MAPP seems to be beneficial in the retention of mechanical properties during fungal attack. rPP/wood composites can be considered non-ecotoxic and quite durable, but the influence of wood content on resistance to fungal attack must be taken into account for materials intended for applications requiring long-term outdoor exposure.
回收聚丙烯(rPP)由工业碎纸机回收,并用相对较宽的木粉含量和两种偶联剂制备复合材料,即马来酸接枝聚丙烯(MAPP)和马来酸接枝乙烯-丙烯-二烯弹性体(MAEPDM)。复合材料的力学性能表明,偶联剂仅略微改变结构,但界面附着力却大大增强。通过将材料暴露于一系列真菌中来确定其耐久性,并对水生生物发光菌进行了生态毒性研究。这些复合材料通常表现出较低的急性毒性,其值低于被认为对水生生态系统具有直接生态毒性影响的水平(<2 毒性单位)。与不含任何偶联剂的复合材料相比,复合材料中含有 MAPP 或 MAEPDM 的 24 小时水性提取物的 E50 值更大,表明其对发光菌的毒性取决于偶联剂的存在。抗真菌定植和劣化的评估证明,木材有利于真菌的定植。真菌会导致轻微的质量损失(<3%),但与材料性能的实质性恶化无关。在真菌攻击过程中,MAPP 似乎有利于保持机械性能。rPP/木复合材料可以被认为是非生态毒性和相当耐用的,但对于需要长期户外暴露的应用材料,必须考虑木材含量对抗真菌攻击的影响。