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Thermoplastic Starch and Mica Clay Composites as Biodegradable Mulching Films

机译:热塑性淀粉和云母粘土复合材料作为可生物降解的地膜

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Abstract Multifunctional horticultural mulches satisfy different agronomic needs: control weeds and insects, reduction of water evaporation and soil erosion, as well as prevention of soil splashing on fruits and vegetables. In recent years, biodegradable mulches as substitutes of non-degradable materials have gained relevance in accordance with more environmentally friendly policies. Accordingly, mulching films based on composites of thermoplastic starch (TPS) reinforced with mica clay (MC) particles were developed. Obtained films resulted flexible and those containing MC evidenced a reddish coloration attributed to the high iron content in the mineral. The incorporation of MC within TPS significantly reduced the direct transmissivity coefficients in the photosynthetically active radiation region (radiation that employ green plants for photosynthesis), reaching a decrease of?~?82 for TPS composites with 5 w/w particles. These results are very interesting for mulching since films could prevent the weed growth that competes with the crop. The presence of 5 w/w MC increased 3.9 times the sun protection factor and 1.3 times the UVB protection of TPS films. As it was expected, materials with MC resulted less transparent than films without the particles. Mineral particles could contribute to preserve the TPS films integrity during the crop cycle since adding 1 and 5 w/w MC decreased the materials disintegration after 30?days of composting in?~?35 and?~?57, respectively. Observations from preliminary agronomic assays showed a well-growth seed of arugula, lettuce and pepper when TPS based materials and TPS mica clay composites were used as mulching films.
机译:摘要 多功能园艺地膜可满足不同的农艺需求:防治杂草和昆虫,减少水分蒸发和水土流失,防止土壤飞溅到果蔬上。近年来,可生物降解的覆盖物作为不可降解材料的替代品,随着更环保的政策而变得越来越重要。因此,开发了基于云母粘土(MC)颗粒增强的热塑性淀粉(TPS)复合材料的地膜。获得的薄膜具有柔韧性,而含有MC的薄膜则显示出红色,这归因于矿物中的高铁含量。在TPS中掺入MC显著降低了光合有效辐射区(利用绿色植物进行光合作用的辐射)的直接透射系数,其中5%w/w颗粒的TPS复合材料降低了?~?82%。这些结果对于覆盖非常有趣,因为薄膜可以防止与作物竞争的杂草生长。5% w/w MC的存在使TPS薄膜的防晒系数增加了3.9倍,UVB防护增加了1.3倍。正如预期的那样,具有MC的材料比没有颗粒的薄膜透明度低。矿物颗粒有助于在作物循环期间保持TPS膜的完整性,因为添加1%和5% w/w MC分别减少了堆肥30天后的材料分解?~?35和?~?57%。初步农艺分析的观察结果显示,当使用TPS基材料和TPS云母粘土复合材料作为地膜时,芝麻菜、生菜和辣椒的种子生长良好。

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