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Insights on the aerobic biodegradation of polymers by analysis of evolved carbon dioxide in simulated composting conditions

机译:通过模拟堆肥条件下析出的二氧化碳对聚合物的好氧生物降解的见解

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摘要

The development of novel biodegradable polymers as a way to create sustainable materials has required the development of methodologies to evaluate and understand their biodegradation. In this work, we first provide a critical summary of selected biodegradation tests performed in the last fifteen years for a number of biodegradable materials, providing relevant information about the materials tested, characteristics of the compost used and the method for testing. Then, we report a comparative analysis of the results obtained from eight different biodegradation tests performed in simulated composting conditions by analysis of evolved CO_2 and carried out in an in-house built direct measurement respirometer. The materials evaluated for biodegradation were cellulose, starch, glycerol, polyethylene, and poly(lactic acid). Our results along with the information provided in the literature allowed us to identify that one of the main issues of biodegradation testing is the low reproducibility due to the number of variables involved in the biodegradation process. It is difficult to provide fair comparisons of samples that are not within the same test. Therefore, we provide a critical overview of the different factors affecting the biodegradability, biodegradation rate, and biodegradation mechanisms of polymeric materials. Furthermore, we share the experiences and insights gained during the performance of the different biodegradation tests, and identify areas of opportunity for improving biodegradation testing through evolved CO_2. This information should create a common knowledge platform for people interested in studying the biodegradation of materials.
机译:新型可生物降解聚合物的开发作为一种创造可持续材料的方法,要求开发评估和理解其生物降解方法的方法。在这项工作中,我们首先提供在过去的15年中针对多种可生物降解材料进行的选定生物降解测试的重要摘要,并提供了有关所测试材料,所用堆肥的特性以及测试方法的相关信息。然后,我们报告了对八种不同的生物降解测试结果的比较分析,这些测试是在模拟堆肥条件下通过分析释放出的CO_2并在内部直接测量的呼吸计中进行的。被评估为可生物降解的材料是纤维素,淀粉,甘油,聚乙烯和聚乳酸。我们的结果以及文献中提供的信息使我们能够确定,由于生物降解过程涉及的变量数量众多,生物降解测试的主要问题之一是重现性低。很难提供不在同一测试中的样品的公平比较。因此,我们提供了影响聚合物材料生物降解性,生物降解速率和生物降解机理的不同因素的重要综述。此外,我们分享了在执行不同生物降解测试过程中获得的经验和见解,并确定了通过发展CO_2改善生物降解测试的机会领域。这些信息应该为有兴趣研究材料生物降解的人们创建一个公共知识平台。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2017年第3期|251-271|共21页
  • 作者单位

    School of Packaging, Michigan State University, East Lansing, MI 48824-1223, United States;

    School of Packaging, Michigan State University, East Lansing, MI 48824-1223, United States;

    School of Packaging, Michigan State University, East Lansing, MI 48824-1223, United States;

    School of Packaging, Michigan State University, East Lansing, MI 48824-1223, United States;

    Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, MI 48824-1223, United States;

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

    Compostability; Biodegradable; Poly(lactic acid); Composting; Respiration; Review;

    机译:可堆肥性;可生物降解;聚乳酸堆肥;呼吸;评论;

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