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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Accelerated Biodegradation of Agriculture Film Based on Aromatic-Aliphatic Copolyester in Soil under Mesophilic Conditions
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Accelerated Biodegradation of Agriculture Film Based on Aromatic-Aliphatic Copolyester in Soil under Mesophilic Conditions

机译:中温条件下基于芳香-脂族共聚酯的农用薄膜在土壤中的加​​速生物降解

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A study was conducted on the biodegradation of aromatic-aliphatic copolyester-based agricultural film in soil at 25 degrees C. The polymer is known to be biodegradable under composting conditions although rather recalcitrant under mesophilic conditions. The material investigated comprised of the copolyester filled with approximately 25% of starch containing biodegradable plasticizers, and its behavior was compared to the corresponding material without the filler. Mineralization followed by CO2 production merely reached the point of about 6% after 100 days of incubation in the pure copolyester film, whereas the value of around 53% was recorded for the filled copolyester film, which exceeded the readily biodegradable starch filler content in the material by more than 20% and could be accounted for biodegradation of the copolyester. It was suggested that the accelerated copolyester biodegradation in the starch-filled material was most likely explained by the increase in the active surface area of the material available for the microbial attack after biodegradation of the filler. The results were supported by changes in molecular weight distributions of the copolyester and observations made by several microscopic techniques. These findings encourage further development of biodegradable agricultural films based on this material.
机译:在25摄氏度的土壤中对芳香族脂族共聚酯基农用薄膜进行了生物降解研究。已知该聚合物在堆肥条件下可生物降解,尽管在中温条件下是难降解的。所研究的材料由填充有约25%含淀粉的可生物降解增塑剂的共聚酯组成,并将其性能与不含填料的相应材料进行了比较。在纯共聚酯薄膜中孵育100天后,矿化和随后产生的CO2仅达到约6%的水平,而填充的共聚酯薄膜的记录值约为53%,超过了材料中易于生物降解的淀粉填料含量超过20%,可能是共聚酯生物降解的原因。有人认为,淀粉填充材料中共聚酯加速生物降解的最可能原因是填料生物降解后可用于微生物攻击的材料的有效表面积增加。共聚酯分子量分布的变化和几种显微技术的观察结果支持了该结果。这些发现鼓励基于这种材料的可生物降解农业薄膜的进一步开发。

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