首页> 外文期刊>Journal of Biobased Materials and Bioenergy >Thermal, Biodegradability and Water Barrier Properties of Bio-Nanocomposites Based on Plasticised Sugar Palm Starch and Nanofibrillated Celluloses from Sugar Palm Fibres
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Thermal, Biodegradability and Water Barrier Properties of Bio-Nanocomposites Based on Plasticised Sugar Palm Starch and Nanofibrillated Celluloses from Sugar Palm Fibres

机译:基于糖棕榈纤维的塑料糖棕榈淀粉和纳米纤维纤维素的生物纳米复合材料的热,生物降解性和水阻隔性能

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摘要

Sugar palm (Arenga pinnata) starch and fibre are considered as a waste product of the agroindustry. The purpose of the current study is to determine the thermal, water barrier, and soil degradation properties of biodegradable plasticised sugar palm starch (PSPS) that contains sugar palm nanofibrillated celluloses (SP-NFCs) derived from sugar palm fibre. The bio-nanocomposites were fabricated by using the solution-casting method with the nanocellulose contents in the range of 0.1 wt.%-1.0 wt.%. The thermal stability, water resistance and degradation behaviour improved with increase in SP-NFCs content, due to high compatibility and strong inter-molecular hydrogen bonds formed between PSPS and SP-NFCs. PSPS/SP-NFCs bio-nanocomposites with 1.0 wt.% SP-NFCs content displayed the highest mechanical and thermal stability. Residue that was left during the TGA analysis increased as the SP-NFCs content was increased. Soil burial tests showed biodegradability resistance of the bio-nanocomposites. The following conclusions can be drawn from the present reinforcement study of SP-NFCs enhanced biodegradability, water barrier as well as thermal properties of starch polymer which extended the prospective application of environmentally-friendly polymer material. Potential applications for this eco-material are short product life cycles (plastic packaging and food container).
机译:糖棕榈(arenga pinnata)淀粉和纤维被认为是农业工业的废物。目前研究的目的是确定含有含糖棕榈纤维的糖棕榈植物纤维素(SP-NFC)的可生物降解的塑料糖棕榈淀粉(PSP)的热,水屏障和土壤降解性能。通过使用纳米纤维素含量的溶液浇铸方法制备生物纳米复合材料,其范围为0.1重量% - 1.0重量%。由于在PSP和SP-NFC之间形成的高相容性和强的分子间氢键,SP-NFCs含量增加,热稳定性,耐水性和降解行为改善。 PSP / SP-NFCS生物纳米复合材料,1.0重量%。%SP-NFCS含量显示出最高的机械和热稳定性。随着SP-NFCS含量增加,在TGA分析期间留下的残留物增加。土壤埋葬试验显示生物纳米复合材料的生物降解性抗性。可以从SP-NFCS增强的生物降解性,水屏障以及淀粉聚合物的热性能来汲取以下结论,该淀粉聚合物延伸了环保型聚合物材料的前瞻性施加。这种生态材料的潜在应用是短产品寿命周期(塑料包装和食品容器)。

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