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Natural weathering studies of oil palm trunk lumber (OPTL) green polymer composites enhanced with oil palm shell (OPS) nanoparticles

机译:油棕壳(OPS)纳米颗粒增强的油棕树干木材(OPTL)绿色聚合物复合材料的自然风化研究

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摘要

In this study, a green composite was produced from Oil Palm Trunk Lumber (OPTL) by impregnating oil palm shell (OPS) nanoparticles with formaldehyde resin. The changes of physical, mechanical and morphological properties of the OPS nanoparticles impregnated OPTL as a result of natural weathering was investigated. The OPS fibres were ground with a ball-mill for producing nanoparticles before being mixed with the phenol formaldehyde (PF) resin at a concentration of 1, 3, 5 and 10% w/w basis and impregnated into the OPTL by vacuum-pressure method. The treated OPTL samples were exposed to natural weathering for the period of 6 and 12 months in West Java, Indonesia according to ASTM D1435-99 standard. Physical and mechanical tests were done for analyzing the changes in phenol formaldehyde-nanoparticles impregnated (PF-NPI) OPTL. FT-IR and SEM studies were done to analyze the morphological changes. The results showed that both exposure time of weathering and concentration of PF-NPI had significant impact on physical and mechanical properties of OPTL. The longer exposure of samples to weathering condition reduced the wave numbers during FT-IR test. However, all these physical, mechanical and morphological changes were significant when compared with the untreated samples or only PF impregnated samples. Thus, it can be concluded that PF-NP impregnation into OPTL improved the resistance against natural weathering and would pave the ground for improved products from OPTL for outdoor conditions.
机译:在这项研究中,通过用甲醛树脂浸渍油棕壳(OPS)纳米颗粒,从油棕树干木材(OPTL)生产绿色复合材料。研究了由于自然风化导致的OPS纳米颗粒浸渍OPTL的物理,机械和形态学性质的变化。用球磨机将OPS纤维研磨以生产纳米颗粒,然后将其以1、3、5和10%w / w的浓度与酚醛(PF)树脂混合,并通过真空压力法将其浸渍到OPTL中。根据ASTM D1435-99标准,处理过的OPTL样品在印度尼西亚西爪哇省经历了自然风化6个月和12个月。进行了物理和机械测试,以分析酚醛-纳米颗粒浸渍(PF-NPI)OPTL的变化。进行了FT-IR和SEM研究以分析形态变化。结果表明,风化的暴露时间和PF-NPI的浓度对OPTL的物理和机械性能都有显着影响。样品长时间暴露在风化条件下,减少了FT-IR测试中的波数。但是,与未经处理的样品或仅由PF浸渍的样品相比,所有这些物理,机械和形态变化都非常显着。因此,可以得出结论,PF-NP浸渍到OPTL中可以提高对自然风化的抵抗力,并且可以为OPTL在户外条件下改进产品奠定基础。

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