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首页> 外文期刊>Journal of Applied Polymer Science >Biodegradation of Oxo-Biodegradable Polyethylene
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Biodegradation of Oxo-Biodegradable Polyethylene

机译:可氧化降解的聚乙烯的生物降解

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Biodegradation of polyethylene and oxobiodegradable polyethylene films was studied in this work. Abiotic oxidation, which is the first stage of oxobiodegradation, was carried out for a period corresponding to 4 years of thermo-oxidation at composting temperatures. The oxidation was followed by biodegradation, which was achieved by inoculating the microorganism Pseudomonas aeruginosa on polyethylene film in mineral medium and monitoring its degradation. The changes in the molecular weight of polyethylene and the concentration of oxidation products were monitored by size exclusion chromatography and Fourier transform infrared (FTIR) spectroscopy, respectively. It has been found that the initial abiotic oxidation helps to reduce the molecular weight of oxo-biodegradable polyethylene and form easily biodegradable product fractions. In the microbial degradation stage, P. aeruginosa is found to form biofilm on polymer film indicating its growth. Molecular weight distribution data for biodegraded oxo-biodegradable polyethylene have shown that P. aeruginosa is able to utilize the low-molecular weight fractions produced during oxidation. However, it is not able to perturb the whole of the polymer volume as indicated by the narrowing of the polymer molecular weight distribution curve toward higher molecular fractions. The decrease in the carbonyl index, which indicates the concentration of carbonyl compounds, with time also indicates the progress of biodegradation.
机译:在这项工作中研究了聚乙烯和可氧降解的聚乙烯薄膜的生物降解。非生物氧化是氧生物降解的第一步,在堆肥温度下进行了相当于4年热氧化的时间。氧化后进行生物降解,这是通过将微生物铜绿假单胞菌接种在矿物培养基中的聚乙烯膜上并监测其降解来实现的。聚乙烯的分子量变化和氧化产物的浓度分别通过尺寸排阻色谱和傅立叶变换红外光谱(FTIR)进行监测。已经发现,最初的非生物氧化有助于降低可氧代生物降解的聚乙烯的分子量并形成易于生物降解的产物级分。在微生物降解阶段,发现铜绿假单胞菌在聚合物膜上形成生物膜,表明其生长。可生物降解的可氧代生物降解的聚乙烯的分子量分布数据表明,铜绿假单胞菌能够利用氧化过程中产生的低分子量馏分。然而,如聚合物分子量分布曲线向较高的分子分数的变窄所示,它不能干扰整个聚合物体积。羰基指数的降低(表明羰基化合物的浓度)随着时间的推移也表明了生物降解的进展。

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