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首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Evaluation of Degradable Spun-Melt 100% Polylactic Acid Nonwoven Mulch Materials in a Greenhouse Environment
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Evaluation of Degradable Spun-Melt 100% Polylactic Acid Nonwoven Mulch Materials in a Greenhouse Environment

机译:温室环境中可降解纺丝熔体100%聚乳酸非织造覆盖材料的评价

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The tendency of most commercially available plastic agricultural mulches to undergo only partial fragmentation with time leads to their long-term persistence in soil, resulting in potentially detrimental environmental hazards. Nonwovens composed of biobased polymers such as poly(lactic acid) (PLA) with micron-sized fibers may be potentially valuable for agricultural mulches due to their high mechanical strength and potential ability to undergo complete mineralization. To assess the performance of 100% PLA spunbond (SB) and meltblown (MB) mulches, and commercially available cellulosic mulch, a greenhouse bench study was conducted where the mulches were buried in soil augmented with either lime or compost for 10 and 29 wk to accelerate biodegradation and mineralization. At 10 and 29 wk, MB and SB mulches, respectively, lost considerable mechanical strength for all soil treatments while showing only minimal signs of loss in molecular weight
机译:多数市售塑料农用覆盖物随时间推移仅发生部分破碎的趋势导致它们长期在土壤中持久存在,从而可能造成有害的环境危害。由生物基聚合物(例如聚乳酸(PLA))和微米级纤维组成的非织造布,由于其高机械强度和潜在的完全矿化能力,可能对农用覆盖物具有潜在的价值。为了评估100%PLA纺粘(SB)和熔喷(MB)覆盖物以及市售纤维素覆盖物的性能,进行了温室工作台研究,将覆盖物埋在用石灰或堆肥增强的土壤中10到29 wk加速生物降解和矿化。在10和29周时,MB和SB覆盖膜在所有土壤处理中均丧失了相当大的机械强度,而分子量损失的迹象却很小

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