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Thermophilic anaerobic biodegradation test and analysis of eubacteria involved in anaerobic biodegradation of four specified biodegradable polyesters

机译:四种指定的可生物降解聚酯的厌氧生物降解涉及的嗜热厌氧生物降解试验和真细菌分析

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摘要

The anaerobic biodegradability of 4 bioplastics powders (125-250 μm),polycaprolactone (PCL),poly(lactic acid) (PLA),polyhydroxybutyrate (PHB) and poly(butylene succinate) (PBS),were compared at 55 ℃ under aquatic conditions using our evaluation system reported previously,(the modified ISO 13975 method).In order of increasing anaerobic biodegradation rate,the bioplastics were ranked PHB > PCL > PLA.The biodegradability of PHB,PCL,and PLA was 90% in 14 days,80% in 50 days,and 75% in 75 days,respectively.PBS could not be anaerobically biodegraded by the sludge used in this study.The eubacteria participating in anaerobic bioplastic biodegradation were detected using modern polymerase chain reaction techniques that distinguish metabolically active cells from resting,dormant,or starved cells.Some of the eubacteria participating in anaerobic biodegradation of PHB,PCL,and PLA were of unique character.Organisms involved in anaerobic biodegradation of PHB were 97,100,and 98% identical to Peptococcaceae bacterium Ri50,Bacteroides plebeius,and Catenibacterium mitsuokai,respectively.The organism involved in the anaerobic biodegradation of PCL,however,was poorly related (<95% similarity) to any of the cultured-bacterium database sequences.Anaerobic biodegradation of PLA was undertaken by an organism with 100% identity to Ureibacillus sp.,and by three organisms with poor similarity (≤95%) to any database sequence.Bacillus infernus,Propionibacterium sp.,and two unidentified species were implicated in the anaerobic biodegradation of all three biodegradable plastics.
机译:比较了四种生物塑料粉末(125-250μm),聚己内酯(PCL),聚乳酸(PLA),聚羟基丁酸酯(PHB)和聚丁二酸丁二酸酯(PBS)在55℃下的厌氧生物降解性。使用我们以前报告的评估系统(改进的ISO 13975方法)。按照厌氧生物降解率的提高顺序,将生物塑料的PHB> PCL> PLA排序为PHB,PCL和PLA在14天的生物降解率为90%80分别在50天内的%和75天内的75%。本研究中使用的污泥无法厌氧地降解PBS。使用现代聚合酶链反应技术检测参与厌氧生物塑料生物降解的真细菌,该技术可区分代谢活性细胞与静止细胞,休眠或饥饿的细胞。某些参与PHB,PCL和PLA厌氧生物降解的真细菌具有独特的特征。参与PHB厌氧生物降解的有机体为97,100,与Peptoco的相同性为98%菌科细菌Ri50,褶皱杆菌和三通杆菌。但是,参与PCL厌氧生物降解的生物与任何培养细菌数据库序列的关联性都不强(<95%相似性)。进行了PLA的厌氧生物降解。与尿杆菌属具有100%同一性的生物,以及与任何数据库序列相似性较差(≤95%)的三种生物。地狱芽孢杆菌,丙酸杆菌和两个未鉴定物种与这三种可生物降解的厌氧生物降解有关。塑料。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2013年第6期|1182-1187|共6页
  • 作者单位

    National Institute of Advanced Industrial Science and Technology (AIST),Research Institute of Innovation in Sustainable Chemistry,Higashi 1-1-1,Tsukuba,Ibaraki 305-8565,Japan;

    National Institute of Advanced Industrial Science and Technology (AIST),Research Institute of Innovation in Sustainable Chemistry,Higashi 1-1-1,Tsukuba,Ibaraki 305-8565,Japan;

    National Institute of Advanced Industrial Science and Technology (AIST),Research Institute of Innovation in Sustainable Chemistry,Higashi 1-1-1,Tsukuba,Ibaraki 305-8565,Japan;

    National Institute of Advanced Industrial Science and Technology (AIST),Research Institute of Innovation in Sustainable Chemistry,Higashi 1-1-1,Tsukuba,Ibaraki 305-8565,Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic biodegradation; Methane fermentation; RT-PCR DGGE; Bioplastic; ISO 13975;

    机译:厌氧生物降解;甲烷发酵;RT-PCR DGGE;生物塑料ISO 13975;

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