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壳聚糖作为生物填料在辐射硫化天然橡胶胶乳以及辐射与过氧化物混合硫化天然橡胶胶乳中的作用:热老化下的物理/机械性能及生物降解性

Roles of Chitosan as Bio-Fillers in Radiation-Vulcanized Natural Rubber Latex and Hybrid Radiation and Peroxide-Vulcanized Natural Rubber Latex: Physical/Mechanical Properties under Thermal Aging and Biodegradability.

作者信息

Thumwong Arkarapol, Poltabtim Worawat, Kerdsang Patcharaporn, Saenboonruang Kiadtisak

机构信息

Department of Applied Radiation and Isotopes, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

Department of Materials Science, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

出版信息

Polymers (Basel). 2021 Nov 15;13(22):3940. doi: 10.3390/polym13223940.

Abstract

Although natural rubber was regarded as biodegradable, the degradation is a time-consuming process that could take weeks or months for any degradation or substantial weight loss to be observable, resulting in the need for novel processes/methods to accelerate the rubber degradation. As a result, this work investigated the potential utilization of chitosan (CS) as a biodegradation enhancer for radiation-vulcanized natural rubber latex (R-VNRL) and hybrid radiation and peroxide-vulcanized natural rubber latex (RP-VNRL) composites, with varying CS contents (0, 2, 4, or 6 phr). The R-VNRL samples were prepared using 15 kGy gamma irradiation, while the RP-VNRL samples were prepared using a combination of 0.1 phr tert-butyl hydroperoxide (-BHPO) and 10 kGy gamma irradiation. The properties investigated were biodegradability in the soil and the morphological, chemical, mechanical, and physical properties, both before and after undergoing thermal aging. The results indicated that the biodegradability of both the R-VNRL and RP-VNRL composites was enhanced with the addition of CS, as evidenced by increases in the percentage weight loss (% weight loss) after being buried in soil for 8 weeks from 6.5 ± 0.1% and 6.4 ± 0.1% in a pristine R-VNRL and RP-VNRL samples, respectively, to 10.5 ± 0.1% and 10.2 ± 0.1% in 6-pph CS/R-VNRL and 6-pph CS/RP-VNRL composites, respectively, indicating the biodegradation enhancement of approximately 60%. In addition, the results revealed that the addition of CS could increase the value of tensile modulus by 119%, while decrease the values of tensile strength and elongation at break by 50% and 43%, respectively, in the specimens containing 6-phr CS. In terms of the color appearances, the samples were lighter and yellower after the addition of CS, as evidenced by the noticeably increased and values, based on the CIE color space system. Furthermore, the investigation into the effects of thermal aging showed that the overall tensile properties for both curing systems were reduced, while varying degrees of color change were observed, with the pristine R-VNRL and RP-VNRL samples having more pronounced degradation/changes for both properties. In conclusion, the overall results suggested that CS had great potential to be applied as a bio-filler in R-VNRL and RP-VNRL composites to effectively promote the biodegradability, environmental friendliness, and resistance to thermal degradation of the composites.

摘要

尽管天然橡胶被认为是可生物降解的,但降解过程耗时较长,可能需要数周或数月才能观察到任何降解或显著的重量损失,因此需要新的工艺/方法来加速橡胶降解。因此,本研究考察了壳聚糖(CS)作为辐射硫化天然橡胶胶乳(R-VNRL)以及辐射与过氧化物复合硫化天然橡胶胶乳(RP-VNRL)复合材料生物降解增强剂的潜在用途,其中CS含量分别为0、2、4或6份每百份橡胶(phr)。R-VNRL样品采用15千戈瑞的伽马射线辐照制备,而RP-VNRL样品采用0.1 phr叔丁基过氧化氢(-BHPO)与10千戈瑞伽马射线辐照相结合的方式制备。所研究的性能包括在土壤中的生物降解性以及热老化前后的形态、化学、机械和物理性能。结果表明,添加CS后,R-VNRL和RP-VNRL复合材料的生物降解性均得到增强,这可通过埋入土壤8周后的重量损失百分比(%重量损失)增加得到证明,原始R-VNRL和RP-VNRL样品的重量损失百分比分别为6.5±0.1%和6.4±0.1%,而在6 phr CS/R-VNRL和6 phr CS/RP-VNRL复合材料中分别增加到10.5±0.1%和10.2±0.1%,表明生物降解性提高了约60%。此外,结果显示,在含有6 phr CS的试样中,添加CS可使拉伸模量值增加119%,而拉伸强度和断裂伸长率值分别降低50%和43%。在颜色外观方面,添加CS后样品颜色变浅且变黄,基于CIE颜色空间系统, 和 值显著增加证明了这一点。此外,对热老化影响的研究表明,两种硫化体系的整体拉伸性能均降低,同时观察到不同程度的颜色变化,原始R-VNRL和RP-VNRL样品在这两种性能方面的降解/变化更为明显。总之,总体结果表明,CS作为生物填料在R-VNRL和RP-VNRL复合材料中具有巨大的应用潜力,可有效提高复合材料的生物降解性、环境友好性和抗热降解性。

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