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首页> 外文期刊>Journal of Polymers and the Environment >Degradation Rate of Bio-based Agricultural Mulch is Influenced by Mulch Composition and Biostimulant Application
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Degradation Rate of Bio-based Agricultural Mulch is Influenced by Mulch Composition and Biostimulant Application

机译:生物基农用覆盖物的降解速率受覆盖物组成和生物刺激剂应用的影响

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摘要

Spunbond polylactic acid (PLA) based agricultural mulches provide several benefits including environmental sustainability, durability, weed control, and soil moisture conservation. Large-scale adoption of PLA mulches in organic and conventional agricultural systems has been limited due to slow to biodegradation and persistence in soil. A 16-week microcosm study was conducted to assess the effects of four commercially available biostimulants (Biocat 1000, Extract PBA, Custom GP, and Environoc 501), a compost extract, and distilled water, urea, and sucrose controls on biodegradation and microbial respiration of bio-based mulch in soil. Mulch treatments included a spunbond PLA mulch, two novel composite PLA mulches with alfalfa (PLA-A) and soy (PLA-S) particles embedded in the fabric, paper mulch, and bio-based plastic film. After 16weeks, the PLA-A and PLA-S mulches lost 43% and 48% more mass than the PLA mulch. Cumulative microbial respiration in the PLA-A and PLA-S mulch microcosms was 245% and 239% greater than respiration in PLA mulch microcosms. The effects of biostimulants on biodegradation and microbial respiration were inconsistent. Our results suggest that composite spunbond PLA mulches containing plant-based materials degrade more quickly than pure PLA mulches in soil, and certain biostimulant products may accelerate biodegradation.
机译:基于纺粘聚乳酸(PLA)的农用覆盖物具有多种优势,包括环境可持续性,耐久性,杂草控制和土壤水分保护。由于生物降解速度慢和土壤中的持久性,在有机和常规农业系统中大规模采用PLA覆盖层受到限制。进行了为期16周的微观研究,以评估四种市售生物兴奋剂(Biocat 1000,PBA提取物,Custom GP和Environoc 501),堆肥提取物以及蒸馏水,尿素和蔗糖对照对生物降解和微生物呼吸的影响。土壤中的生物基覆盖物。覆盖物处理包括纺粘的PLA覆盖物,两种新的苜蓿(PLA-A)和大豆(PLA-S)颗粒嵌入织物中的复合PLA覆盖物,纸覆盖物和生物基塑料薄膜。 16周后,PLA-A和PLA-S覆盖物的质量比PLA覆盖物损失了43%和48%。在PLA-A和PLA-S覆盖微观世界中,累积微生物呼吸比PLA覆盖微观世界中的呼吸分别高245%和239%。生物刺激物对生物降解和微生物呼吸的影响不一致。我们的结果表明,含有植物基材料的复合纺粘PLA覆盖物在土壤中的降解速度要比纯PLA覆盖物更快,并且某些生物刺激产品可能会加速生物降解。

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