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Recycling engine oil containers to prepare wood-plastic composites

机译:回收机油容器以制备木塑复合材料

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The collected oil containers were drained, crushed, and used directly to make wood-plastic composites through reactive extrusion, using maleic anhydride (MA) and maleated polyethylene (PE-g-MA) as coupling agents. Oil residue in the container would be controlled at lower than 6 wt % through simple draining, and it played a role as a plasticizer in the plastics and composites. As a coupling agent, MA performed better than PE-g-MA. The comprehensive mechanical properties of oil container plastics (OCP)/wood/MA (60/40/2 w/w) composite were at the same level as those of neat plastic/wood/PE-g-MA (60/40/3.2 w/w) system. Both PE-g-MA and MA effectively improved water resistance of the OCP/wood flour composites, especially MA. The residual oil in the composites was stable under heat to about 200°C or in the water, and it did not influence the thermal degradation behavior of the composites. The OCP was successfully used to make wood-plastic composite panels.
机译:使用马来酸酐(MA)和马来酸化聚乙烯(PE-g-MA)作为偶联剂,将收集的油容器沥干,压碎,并通过反应挤出直接用于制造木塑复合材料。通过简单的排放,可以将容器中的残油控制在6 wt%以下,并且在塑料和复合材料中起增塑剂的作用。作为偶联剂,MA的性能优于PE-g-MA。油容器塑料(OCP)/木材/ MA(60/40/2 w / w)复合材料的综合机械性能与纯塑料/木材/ PE-g-MA(60/40 / 3.2)处于同一水平w / w)系统。 PE-g-MA和MA均可有效提高OCP /木粉复合材料(特别是MA)的耐水性。复合材料中的残余油在加热至约200°C或在水中或在水中均稳定,并且不影响复合材料的热降解行为。 OCP已成功用于制造木塑复合板。

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