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Comparative effect of metal stearates as pro-oxidant additives on bacterial biodegradation of thermal- and photo-degraded low density polyethylene mulching films

机译:金属硬脂酸盐作为助氧化剂对热降解和光降解低密度聚乙烯覆盖膜细菌降解的比较作用

摘要

The effect of Iron, Cobalt and Manganese stearates are examined on the post-bacterial photochemical and thermal degradation of polyethylene (LDPE). The activity of stearates has been evaluated by ATR-FTIR, chemiluminescence and GPC of polyethylenes. A significant increase in carbonyl index for PE containing stearates was determined by FTIR together with a marked decrease in molecular weight as measured by GPC. All three metal stearates induced the development of drastic photo- and thermal-degradation processes for polyethylenes containing metal stearates except in the case of LDPE-Fe film which did not exhibit any significant thermocatalytic effect on degradation.In a second post bacterial study step, a mixture of three Bacillus MIX (B acillus cereus, B acillus megaterium and B acillus subtilis) as well as Brevibacillus borstelensis were tested for biodegradation (90 days at 45°C) of the highly photo- and thermo-degraded polyethylene films. Biodegraded materials were characterized using different techniques and mineralization was evaluated by carbon dioxide measurement using an indirect impedance technique. The biodegradation of degraded LDPE films by B.borstelensis and the mixture of Bacillus MIX was highly effective following the order LDPE-Co>LDPE-Mn>LDPE-Fe and in the range of 9.0-59.2% of mineralization after only 90 days of bacterial bioassay at 45°C. The approach studied in this work showed much higher degradable efficacy than that already reported in the literature. © 2013 Elsevier Ltd.
机译:研究了硬脂酸铁,钴和锰对聚乙烯(LDPE)的细菌光化学降解和热降解的影响。硬脂酸酯的活性已通过聚乙烯的ATR-FTIR,化学发光和GPC进行了评估。 FTIR测定了含PE的硬脂酸酯的羰基指数的显着增加,而GPC测定的分子量则显着降低。除LDPE-Fe膜对降解没有任何明显的热催化作用外,所有三种金属硬脂酸酯均导致含有金属硬脂酸酯的聚乙烯发生剧烈的光降解和热降解过程。测试了三种芽孢杆菌混合液(蜡状芽孢杆菌,巨大芽孢杆菌和枯草芽孢杆菌)以及博氏短杆菌的混合物在高度光降解和热降解的聚乙烯薄膜中的生物降解能力(在45°C下90天)。使用不同的技术对生物降解的材料进行表征,并使用间接阻抗技术通过二氧化碳测量评估矿化程度。 B.borstelensis和芽孢杆菌MIX混合物对LDPE降解膜的生物降解非常有效,遵循LDPE-Co> LDPE-Mn> LDPE-Fe的顺序,仅经过90天的细菌发酵,其矿化率为9.0-59.2%。在45°C下进行生物测定。在这项工作中研究的方法显示出比文献中已经报道的更高的可降解功效。 ©2013爱思唯尔有限公司。

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