DEGRADATION OF BIOPLASTICS UNDER THE INFLUENCE OF SEVERAL ENVIRONMENTAL CONDITIONS

M. Rizwan
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Abstract

The rising environmental risks that plastics bring led to the development of bioplastics from renewable biomass resources. Glycerol is used to starch to create high-quality bioplastics.Plastics are fundamentally synthetic or synthetic-like materials that do not disintegrate. This study aimsto investigate the degradation of bioplastics. Synthetic plastics are more damaging to the environmentthan bioplastics. Soil, compost, and water are just a few of the environments where the bio-plastics candegrade. The bioplastic components are buried in composite soil or loam sand in order to weigh themand take photographs of the breakdown activity. Different weather circumstances, such as temperature,humidity, rainfall, sunshine intensity, and sunlight duration, were recorded in order to study the impactof weather on the degrading activities. The comparison of the results showed that hydrophilic enzymeswere used to carry out the bio-plastics' breakdown activity. After saturation, the initial regenerativematerial absorbs soil moisture, increasing weight by up to 87%. Following the start of the degradationprocess, the weight of the bio-plastics gradually decreased. Microorganisms from the soil that invadehelp the deterioration process. Rainfall, humidity, and the amount of sunlight all have an impact on theenvironment and how quickly bioplastics degrade. The rate at which bio-plastics degraded increased asa result of the soil's increased microbial activity brought on by the increased solar intensity.
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几种环境条件影响下生物塑料的降解
塑料带来的环境风险不断上升,促使人们从可再生生物质资源中开发生物塑料。甘油被用来制造淀粉以制造高质量的生物塑料。塑料基本上是合成的或类似合成的材料,不会分解。本研究旨在探讨生物塑料的降解。合成塑料比生物塑料对环境的危害更大。土壤、堆肥和水只是生物塑料可以降解的几个环境。生物塑料成分被埋在复合土壤或壤土中,以便称重并拍摄分解活动的照片。通过记录不同的天气条件,如温度、湿度、降雨量、日照强度和日照时间,研究天气对降解活动的影响。结果表明,采用亲水性酶进行生物塑料的分解活性。饱和后,初始再生材料吸收土壤水分,增加重量高达87%。随着降解过程的开始,生物塑料的重量逐渐降低。来自土壤的微生物入侵,加速了腐坏过程。降雨、湿度和日照量都对环境和生物塑料降解的速度有影响。由于太阳强度增加,土壤微生物活性增加,生物塑料的降解速度加快。
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