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首页> 外文期刊>Journal of Hazardous Materials >Integrated approach in LDPE degradation - An application using Winogradsky column, computational modeling, and pathway prediction
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Integrated approach in LDPE degradation - An application using Winogradsky column, computational modeling, and pathway prediction

机译:LDPE劣化中的集成方法 - 使用Winogradsky列,计算建模和途径预测的应用

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摘要

Plastic pollution in the current scenario requires a sustainable and eco-friendly treatment process. Single-use plastics accumulate more than recyclable plastic wastes. Low-Density Polyethylene (LDPE) is one among the plastic family with inert characteristics. The traditional method, such as landfilling, develops pollution resistant micro-organisms. It is involved in the exploitation of the native microbes to the fullest. The soil of the Kodungaiyur, agriculture site, and Otteri dumpyard were used, which resulted in nearly 22.97 ? 2.7115%, 15.91667 ? 2.73775%, and 10.74 ? 0.502925% of LDPE degradation in 30 days without nutrient supplements. The enrichment of the column by organic nutrients increased the degradation of LDPE. The column enrichment was confirmed by the sulfur oxidizing bacteria (SOB) Escherichia coli and Pseudomonas stutzeri, which produced 195 mg/mL of sulfate ions. The FTIR of the LDPE degradation showed the polymer?s oxygenation, while the electron microscopic images revealed cracks. In addition, an attempt was made to fit the experimental time-series data into suitable mathematical models to look at prediction and elementary forecasting. Three mathematical models, namely the customized moving averages model (CMAM), simple liinear regression model (SLRM), and a modified linear regression model (MLRM) with a lag, were able to represent the real experimental data complementarily.
机译:目前情景中的塑料污染需要可持续和环保的治疗过程。单用塑料积累的塑料脂肪量多。低密度聚乙烯(LDPE)是塑料家族中的一种,具有惰性特性。传统方法,如填埋,发展污染抗性微生物。它参与了最充分利用本地微生物。使用了Kodungaiyur,农业场所和Otteri垃圾场的土壤,导致近22.97年? 2.7115%,15.91667? 2.73775%和10.74? 0.502925%的LDPE降解30天,没有营养补充剂。通过有机营养素富集柱增加了LDPE的降解。通过硫氧化细菌(SOB)大肠杆菌和假单胞菌符号的硫酸柱证实了柱富集,其制备了195mg / ml硫酸盐离子。 LDPE降解的FTIR显示了聚合物的氧合,而电子显微镜图像显示出裂缝。此外,还尝试将实验时间序列数据拟合到适当的数学模型中,以查看预测和基本的预测。三个数学模型,即定制的移动平均模型(CMAM),简单的Liinear回归模型(SLRM),以及具有滞后的改进的线性回归模型(MLRM)能够互补地表示真实的实验数据。

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