首页> 外文期刊>Journal of Applied Polymer Science >Characterization of linear low-density polyethylene/poly(vinyl alcohol) blends and their biodegradability by Vibrio sp. isolated from marine benthic environment
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Characterization of linear low-density polyethylene/poly(vinyl alcohol) blends and their biodegradability by Vibrio sp. isolated from marine benthic environment

机译:线性低密度聚乙烯/聚乙烯醇共混物的表征及其被Vibrio sp。降解的能力。与海洋底栖环境隔离

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摘要

Increasing amounts of plastic waste in the environment have become a problem of gigantic proportions. The case of linear low-density polyethylene (LLDPE) is especially significant as it is widely used for packaging and other applications. This synthetic polymer is normally not biodegradable until it is degraded into low molecular mass fragments that can be assimilated by microorganisms. Blends of nonbiodegradable polymers and biodegradable commercial polymers such as poly (vinyl alcohol) (PVA) can facilitate a reduction in the volume of plastic waste when they undergo partial degradation. Further, the remaining fragments stand a greater chance of undergoing biodegradation in a much shorter span of time. In this investigation, LLDPE was blended with different proportions of PVA (5-30%) in a torque rheometer. Mechanical, thermal, and biodegradation studies were carried out on the blends. The biodegradability of LLDPE/PVA blends has been studied in two environments: (1) in a culture medium containing Vibrio sp. and (2) soil environment, both over a period of 15 weeks. Blends exposed to culture medium degraded more than that exposed to soil environment. Changes in various properties of LLDPE/PVA blends before and after degradation were monitored using Fourier transform infrared spectroscopy, a differential scanning calorimeter (DSC) for crystallinity, and scanning electron microscope (SEM) for surface morphology among other things. Percentage crystallinity decreased as the PVA content increased and biodegradation resulted in an increase of crystallinity in LLDPE/PVA blends. The results prove that partial biodegradation of the blends has occurred holding promise for an eventual biodegradable product.
机译:环境中越来越多的塑料废物已成为一个巨大的问题。线性低密度聚乙烯(LLDPE)的情况尤为重要,因为它广泛用于包装和其他应用。这种合成聚合物通常不可生物降解,直到将其降解成可被微生物吸收的低分子量片段。不可生物降解的聚合物和可生物降解的商业聚合物(例如聚乙烯醇)的共混物可以促进塑料废物在部分降解时的体积减少。此外,剩余的片段在短得多的时间跨度中经历生物降解的可能性更大。在这项研究中,LLDPE在扭矩流变仪中与不同比例的PVA(5-30%)混合。对共混物进行了机械,热和生物降解研究。已经在两种环境中研究了LLDPE / PVA共混物的生物降解性:(1)在含有Vibrio sp。的培养基中。 (2)持续15周的土壤环境。暴露于培养基中的混合物降解的程度大于暴露于土壤环境中的混合物。使用傅立叶变换红外光谱仪,用于结晶度的差示扫描量热仪(DSC)和用于表面形态的扫描电子显微镜(SEM)监控降解前后LLDPE / PVA共混物各种性能的变化。结晶度百分比随PVA含量的增加而降低,生物降解导致LLDPE / PVA共混物的结晶度增加。结果证明,共混物已经发生部分生物降解,这对于最终的可生物降解产品很有希望。

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