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Assessment of UV exposure and aerobic biodegradation of poly(butylene adipate-co-terephthalate)/starch blend films coated with radiation-curable print inks containing degradation-promoting additives

机译:评估涂有含降解促进剂的可辐射固化印刷油墨的聚己二酸丁二醇酯/对苯二甲酸丁二醇酯/淀粉共混膜的紫外线暴露和需氧生物降解

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Biodegradable poly(butylene adipate-co-terephthalate) (PBAT) and thermoplastic starch (TPS) blend films were printed with white, yellow, red, blue, and black inks based on epoxy acrylate resin. Clear PBAT/TPS films were used as the control. Ink formulations were also modified with (1% w/w) and without the degradation-promoting additives cobalt stearate (CoSt) or cerium stearate (CeSt). Printed PBAT/TPS films were cured under ultraviolet light emitted by a medium-pressure mercury lamp at 10.3 kW m(-2), and then further aged in a accelerated weathering chamber at a total irradiance of 0.89 Wm(-2) continuously for 250 h at 50 +/- 3 degrees C. Subsequently, samples were exposed to an aerobic composting biodegradation process at 58 C and 55% relative humidity for 60 d. Color (L*, a* and b*), gloss and hardness indexes, as well as FTIR spectra, were obtained. Thermal properties and molecular structure were monitored before and after UV exposure and biodegradation tests. The addition of CoSt affected the color, gloss and hardness of the samples exposed to UV aging. The degradation of the PBAT/TPS + CoSt films depended on the nature of the ink pigment and on their capacity to absorb UV photons. UV exposure of PBAT/TPCS samples resulted in a larger reduction of weight average molecular weight ((M) over bar (w)) and the evolution of CO2. The incorporation of the degradation-promoting additives increased the sensitivity of the films to UV degradation, and CoSt had a large impact in the final (M) over bar (w) of the samples
机译:用基于环氧丙烯酸酯树脂的白色,黄色,红色,蓝色和黑色油墨印刷可生物降解的聚(己二酸丁二酯-对苯二甲酸丁二酯)(PBAT)和热塑性淀粉(TPS)共混膜。透明的PBAT / TPS膜用作对照。还用(1%w / w)且不添加促进降解的添加剂硬脂酸钴(CoSt)或硬脂酸铈(CeSt)对油墨配方进行了改性。印刷的PBAT / TPS膜在中压汞灯发出的紫外线下以10.3 kW m(-2)固化,然后在加速风化室中以0.89 Wm(-2)的总辐照度连续老化250在50 +/- 3摄氏度的条件下放置30小时。随后,将样品在58摄氏度和55%相对湿度下进行需氧堆肥生物降解过程60 d。获得了颜色(L *,a *和b *),光泽度和硬度指数以及FTIR光谱。在紫外线暴露和生物降解测试之前和之后监测热性质和分子结构。 CoSt的添加会影响暴露于紫外线老化的样品的颜色,光泽和硬度。 PBAT / TPS + CoSt膜的降解取决于油墨颜料的性质及其吸收紫外线光子的能力。 PBAT / TPCS样品的紫外线照射导致重均分子量((M)超过bar(w))更大程度降低,并释放出CO2。掺入降解促进剂增加了薄膜对紫外线降解的敏感性,CoSt对样品的最终(M)超过bar(w)有很大的影响

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