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Characterization and biodegradability of foam based on coconut flesh waste-filled high density polyethylene

机译:基于椰子果肉废料的高密度聚乙烯泡沫的表征和生物降解性

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摘要

Polymer foam biocomposites based on HDPE/coconut flesh waste were successfully produced by an extrusion foaming process. The compounding of the HDPE with coconut flesh waste was performed via a twin screw extruder which blends the materials with dicumyl peroxide (DCP) and chemical blowing agent (ADC). Five formulations with varying amount of coconut flesh waste were extruded at setting temperatures of 170°C at the melting zone whereas temperature of 190°C was set at the end of the die zone. This research studies the effect of different filler loading, the incorporation of DCP as crosslinking agent and ADC as the blowing agent on morphology (cell structure) of the foam samples. From the optical micrographs of Scanning Electron Microscope (SEM), it was obvious that closed-cell foams were developed. Plus, from the SEM images obtained it can also be concluded that as the filler loading increased, distorted and irregular cell geometry was formed. Density determination by Mettler Toledo Density Meter revealed that density increment was achieved by all foam samples as the filler content increased. From the Differential Scanning Calorimeter (DSC) result, it was noticeable that the percent of crystallinity decreases with increased in filler loading and the melting temperature of the biocomposites were not much affected by the incorporation of coconut waste. Finally, the additions of biodegradable coconut flesh waste into each formulation have significantly improved the biodegradability of these composites.
机译:通过挤出发泡工艺成功生产了基于HDPE /椰子果肉废料的聚合物泡沫生物复合材料。 HDPE与椰子果肉废料的混合是通过双螺杆挤出机进行的,该挤出机将材料与过氧化二枯基(DCP)和化学发泡剂(ADC)混合。在融化区的设定温度为170°C时挤出五种配方,其中椰子肉废料的量各不相同,而在模头区的末端设定为190°C。这项研究研究了不同填充量,DCP作为交联剂和ADC作为发泡剂的掺入对泡沫样品形态(孔结构)的影响。从扫描电子显微镜(SEM)的光学显微照片可以明显看出,已经形成了闭孔泡沫。另外,从获得的SEM图像还可以得出结论,随着填充物负载的增加,会形成扭曲的和不规则的孔几何形状。通过梅特勒-托利多密度计的密度测定表明,随着填料含量的增加,所有泡沫样品均实现了密度增加。从差示扫描量热仪(DSC)的结果可以看出,结晶度的百分比随填料含量的增加而降低,而椰子汁的掺入对生物复合材料的熔化温度影响不大。最后,在每种配方中添加可生物降解的椰子果肉废物已显着改善了这些复合材料的生物降解性。

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    Mat Nayan Nadirul Hasraf;

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  • 年度 2010
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