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Environmental degradation and efficacy of a sprayable, biodegradable polymeric mulch

机译:喷雾剂,可生物降解的聚合物覆盖物的环境降解和功效

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摘要

Polyethylene (PE) and other non-degradable plastics are used in vast quantities as agriculture mulch to help protect the soil surface, conserve water, and improve soil microclimatic factors. Unfortunately, their continued use poses several environmental problems, so an environmentally friendly solution needs to be found. The use of biodegradable plastics in place of conventional PE is one well studied solution, and here we investigate how different controlled environmental conditions affect the water conservation efficacy, and rate of biodegradation of a novel, biodegradable, sprayable polycaprolactone based polyurethane mulch. The effect of soil moisture content, sunlight, soil type, and polymer pigmentation are investigated using several different characterization techniques and measurements. It was found that the polymer studied is effective at conserving soil moisture, and that it biodegrades at different rates via a bulk erosion mechanism. The rate at which it degrades mostly depends on the soil type to which it is applied, and the moisture content of that soil. This was confirmed using soil CO_2 emissions, polymer mass loss, polymer molecular weight reduction, and scanning electron microscopy. Results are discussed.
机译:聚乙烯(PE)和其他不可降解的塑料用于农业覆盖物,以帮助保护土壤表面,节约用水,改善土壤微跨界因子。不幸的是,他们的继续使用造成了几个环境问题,因此需要找到环保的解决方案。使用可生物降解的塑料代替常规PE是一种研究的解决方案,并且在这里我们研究了不同的受控环境条件如何影响水处理疗效,以及新型可生物降解,可喷包唑基的聚氨酯覆盖物的水分凝固率。使用几种不同的表征技术和测量来研究土壤含水量,阳光,土壤类型和聚合物色素沉着的影响。结果发现,研究的聚合物在保护土壤水分方面是有效的,并且它通过散装侵蚀机制以不同的速率生物降解。它劣化的速率主要取决于其应用的土壤类型和该土壤的水分含量。通过土壤CO_2排放,聚合物质量损失,聚合物分子量还原和扫描电子显微镜确认这一点。结果是讨论的。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第5期|109126.1-109126.10|共10页
  • 作者单位

    School of Chemistry Monash University Clayton VIC 3800 Australia Commonwealth Scientific and Industrial Research Organisation Manufacturing Flagship Clayton VIC 3168 Australia;

    Commonwealth Scientific and Industrial Research Organisation Manufacturing Flagship Clayton VIC 3168 Australia;

    Commonwealth Scientific and Industrial Research Organisation Manufacturing Flagship Clayton VIC 3168 Australia;

    School of Chemistry Monash University Clayton VIC 3800 Australia;

    School of Chemistry Monash University Clayton VIC 3800 Australia;

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

    Sprayable polymer; Biodegradation; Mulching; Agriculture; Soil;

    机译:可喷涂聚合物;生物降解;覆盖;农业;土壤;

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