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Analysis and microbial degradation of Low-Density Polyethylene (LDPE) in Winogradsky column

机译:Winogradsky柱低密度聚乙烯(LDPE)分析与微生物降解

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Plastic pollution is threatening the world and the life in it. Cost-effective and eco-friendly treatment is the need of the hour. Treating plastics using chemical methods adds up chemicals into the environment with toxic byproducts. The physical method, a slow and expensive process, is not the better alternative. The process should rely on the environmental sources producing eco-friendly byproducts. The byproducts such as biofuel could be utilized for a sustainable environment, but the conversion of plastics into biofuel is expensive. Hence, biodeg-radation is the better, sustainable, and cost-effective process for plastic/any other pollutant removal. The study focuses on the construction of Winogradsky column using dumpsite soil. The column amended with Low-Density Polyethylene (LDPE) serves as a carbon source for native microbes. The utilization of microbes in every niche for the degradation enhances the degradation of LDPE. The Otteri soil resulted in 35.4 ± 0.3%, while Kodungaiyur and agriculture soil show 29.7 ± 0.6% and 19.8 ± 0.8%. The AFM analysis shows the disruption of smooth LDPE surface by forming ridges and grooves, which further confirms the occurrence of degradation. The FTIR analysis shows the incorporation of OH, CO, and other CO-O-CO in the CH backbone of LDPE. The oxidation of LDPE will aid in cleavage and result in the process of weathering. The tensile strength decreased after LDPE treatment (23.88 MPa - control, 22.50 MPa - Kodungaiyur, and 14.92 MPa - Otteri). Thus, utilizing the native microbes present in every niche enhances the degradation of pollutants.
机译:塑料污染正在威胁到世界和生活中的生活。具有成本效益和环保的治疗是需要时的需求。使用化学方法治疗塑料,含有毒性副产品的环境。物理方法,缓慢而昂贵的过程,不是更好的替代方案。该过程应依赖于生产环保副产品的环境源。生物燃料等副产品可用于可持续环境,但塑料转化为生物燃料是昂贵的。因此,生物溶剂是塑料/任何其他污染物去除的更好,可持续和成本效益的方法。该研究侧重于使用Dumpsite土壤建造Winogradsky专栏。用低密度聚乙烯(LDPE)修正的柱用作天然微生物的碳源。每个Niche的微生物的利用增强了LDPE的降解。 Otteri土壤导致35.4±0.3%,而Kodungaiyur和农业土壤显示29.7±0.6%和19.8±0.8%。 AFM分析显示通过形成脊和凹槽来破坏光滑的LDPE表面,这进一步证实了降解的发生。 FTIR分析显示了在LDPE的CH骨架中的OH,CO和其他CO-CO的掺入。 LDPE的氧化将有助于切割并导致风化的过程。 LDPE处理后拉伸强度降低(23.88MPa - 对照,22.50MPa - Kodungaiyur和14.92MPa - Otteri)。因此,利用每种利基中存在的天然微生物增强污染物的降解。

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