Ab Rahman Mohd Fikri, Rusli Arjulizan, Misman Muhammad Afiq, Rashid Azura A
School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia.
ACS Omega. 2020 Nov 12;5(46):30329-30335. doi: 10.1021/acsomega.0c04964. eCollection 2020 Nov 24.
With increased awareness on the importance of gloves arising from the COVID-19 pandemic, people are expected to continue using them even after the pandemic recedes. This scenario in a way increased the rubber solid waste disposal problem; therefore, the production of biodegradable gloves may be an option to overcome this problem. However, the need to study the shelf life of biodegradable gloves is crucial before commercialization. There are well-established models to address the failure properties of gloves as stated in the American Society for Testing and Material (ASTM) D7160. In this study, polysaccharide-based material-filled natural rubber latex (PFNRL) gloves, which are biodegradable gloves, were subjected to an accelerated aging process at different temperatures of 50-80 °C for 1-120 days. Prediction models based on Arrhenius and shift factors were used to estimate the shelf life of the PFNRL gloves. Based on the results obtained, the estimated time for the PFNRL gloves to retain 75% of their tensile strength at shelf temperature (30 °C) based on Arrhenius and shift factor models was 2.8 years. Verification on the activation energy based on the shift factor model indicated that the shelf life of PFNRL gloves is 2.9 years, which is only a 3.6% difference. The value obtained is aligned with the requirement in accordance with ASTM D7160, which states that only up to a maximum of 3 years' shelf life is allowed for the gloves under accelerated aging conditions.
随着新冠疫情使人们愈发意识到手套的重要性,预计即便疫情消退后人们仍会继续使用手套。这种情况在一定程度上加剧了橡胶固体废物的处理问题;因此,生产可生物降解手套可能是解决这一问题的一个选择。然而,在将可生物降解手套商业化之前,研究其保质期至关重要。美国材料与试验协会(ASTM)D7160中规定了用于解决手套失效特性的成熟模型。在本研究中,可生物降解的基于多糖材料填充的天然橡胶乳胶(PFNRL)手套在50 - 80°C的不同温度下进行了1 - 120天的加速老化处理。基于阿伦尼乌斯方程和位移因子的预测模型被用于估计PFNRL手套的保质期。根据所得结果,基于阿伦尼乌斯方程和位移因子模型,PFNRL手套在储存温度(30°C)下保持其拉伸强度75%的估计时间为2.8年。基于位移因子模型对活化能的验证表明,PFNRL手套的保质期为2.9年,两者仅相差3.6%。所得数值符合ASTM D7160的要求,该标准规定在加速老化条件下手套的保质期最长为3年。