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天然纤维和聚乳酸聚合物制成的非织造覆盖物的性能与降解——田间试验研究

Performance and Degradation of Nonwoven Mulches Made of Natural Fibres and PLA Polymer-Open Field Study.

作者信息

Marasović Paula, Kopitar Dragana, Brunšek Ružica, Schwarz Ivana

机构信息

Department of Textile Design and Management, Faculty of Textile Technology, University of Zagreb, Prilaz baruna Filipovica 28a, 10000 Zagreb, Croatia.

Department of Materials, Fibres and Textile Testing, Faculty of Textile Technology, University of Zagreb, Prilaz baruna Filipovica 28a, 10000 Zagreb, Croatia.

出版信息

Polymers (Basel). 2023 Nov 17;15(22):4447. doi: 10.3390/polym15224447.

Abstract

The need for sustainable alternatives to conventional plastic mulches in agriculture has led to the development of various types of biodegradable mulches made from natural fibres and biopolymers to reduce environmental pollution and mitigate soil pollution caused by conventional plastic mulch usage. Degradation, impact on soil temperature and humidity, and weed suppression properties of needle-punched nonwoven mulches of different mass per unit area, made of jute, hemp, viscose, and PLA biopolymer, are investigated. Their biodegradation is determined by changes in the mulch properties (mass per unit area, thickness, air permeability, tensile properties, microscopic images, and FTIR analyses) during 300 days of exposure to the environmental conditions in the period from May 2022 to February 2023. The change in mass per unit area, thickness, air permeability, and tensile properties of nonwoven mulches did not show a tendency to degrade during exposure to environmental conditions. The microscopic and FTIR analysis showed the degradation of the fibres from the mulches during the exposure time to a certain extent. The environmental conditions influence the change in the dimensions of the mulches (shrinkage and expansion)-which impact periodically tested mass results per unit area-as well as their thickness and air permeability. The nonwoven mulches provide higher temperatures compared to bare soil, though not as high as those observed beneath traditional agricultural foil. When comparing the humidity in bare soil and soil covered by mulches during the plant growth period (June to October), it was found that soil humidity was higher beneath all mulches. The nonwoven mulches provide superior soil moisture retention compared to conventionally used agrofoil. Almost all nonwoven mulches effectively suppressed weed growth, except hemp mulches. The newly produced mulches have the potential to replace traditional agrofoil, offering improved conditions for plant growth, effective weed control, and faster degradation without causing harm to the environment.

摘要

农业中对传统塑料地膜可持续替代物的需求,促使人们开发出了由天然纤维和生物聚合物制成的各类可生物降解地膜,以减少环境污染,并减轻传统塑料地膜使用所造成的土壤污染。对由黄麻、大麻、粘胶和聚乳酸生物聚合物制成的不同单位面积质量的针刺无纺布地膜的降解、对土壤温度和湿度的影响以及杂草抑制特性进行了研究。它们的生物降解是通过在2022年5月至2023年2月期间暴露于环境条件300天内地膜特性(单位面积质量、厚度、透气率、拉伸性能、微观图像和傅里叶变换红外光谱分析)的变化来确定的。无纺布地膜的单位面积质量、厚度、透气率和拉伸性能在暴露于环境条件期间没有显示出降解的趋势。微观和傅里叶变换红外光谱分析表明,在暴露期间地膜中的纤维有一定程度的降解。环境条件影响地膜尺寸的变化(收缩和膨胀),这会影响定期测试的单位面积质量结果,以及它们的厚度和透气率。与裸土相比,无纺布地膜能提供更高的温度,尽管不如传统农用薄膜下的温度高。在植物生长期间(6月至10月)比较裸土和覆盖地膜土壤的湿度时,发现所有地膜下的土壤湿度都更高。与传统使用的农用薄膜相比,无纺布地膜具有更好的土壤保水能力。几乎所有无纺布地膜都能有效抑制杂草生长,除了大麻地膜。新生产的地膜有潜力取代传统农用薄膜,为植物生长提供更好的条件,有效控制杂草,并能更快降解而不对环境造成危害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da21/10674407/aea117f8f0ae/polymers-15-04447-g001.jpg

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