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首页> 外文期刊>Biosystems Engineering >Mechanical characterization of blends containing recycled paper pulp and other lignocellulosic materials to develop hydromulches for weed control
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Mechanical characterization of blends containing recycled paper pulp and other lignocellulosic materials to develop hydromulches for weed control

机译:含有再生纸浆的混合物和其他木质纤维素材料的机械表征,用于开发杂草控制的水氯化物

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Spreading of hydromulch as a crop management technique might show important advantages over plastic films for weed control, because it can be applied anywhere in a field, even in orchard and vineyard rows. In the present work, 24 blends were prepared by mixing paper pulp, from recovered paper and cardboard coming from paper mills, with different additives: (a) wheat straw, rice hulls, and substrate used for mushroom cultivation on the one hand as fillers, and (b) rice bran, white glue, sodium silicate, and powered gypsum on the other hand as agglomerating agents. The blends were tested with a texture analyser to evaluate their mechanical properties, testing the puncture resistance (24 blends) and the tensile strength (15 blends). Scanning electron photomicrographs of some blends were obtained in order to explore the relationship between their components and the mechanical properties. The results indicate that a blend prepared with paper pulp, wheat straw sieved at 2.5 mm and gypsum attained the highest stress resistance and tensile strength. An environmentally controlled experiment was performed on this and another hydromulch in which rice husk substituted wheat straw to evaluate their efficiency for reducing weed seedling emergence, using propagules of four common summer weeds. Compared with the control treatment performed, the hydromulches reduced seedling emergence from 64.6% to 95.9%. In general, the percentage of dead seedlings underneath was greater than that which passed through the barrier, making the hydro mulches promising tools for preventing seedling emergence and for managing the weed seed bank in field conditions. (C) 2020 The Author(s). Published by Elsevier Ltd on behalf of IAgrE.
机译:水散液作为作物管理技术的扩散可能表现出对杂草控制的塑料薄膜的重要优势,因为它可以应用于田野的任何地方,即使在果园和葡萄园行中也是如此。在本作本作的工作中,通过将纸浆制备24个混合物,从纸铣刀中的回收纸和纸板混合,具有不同的添加剂:(a)麦秸,稻壳和用于蘑菇栽培的植物作为填料, (b)米糠,白色胶水,硅酸钠和动力石膏,另一方面作为聚集剂。用纹理分析仪测试混合物以评估它们的机械性能,测试穿刺电阻(24混合物)和拉伸强度(15个共混物)。获得一些混合物的扫描电子显微照片以探讨其组分与机械性能之间的关系。结果表明,用纸浆制备的混合物,小麦秸秆筛分在2.5mm和石膏中达到最高应力性和拉伸强度。在这种和另一个水稻中进行了环境控制的实验,其中稻壳取代的小麦秸秆评估了它们用于减少杂草苗的效率,使用四个常见的夏季杂草的繁殖。与对照治疗进行比较,水散液将幼苗出苗减少到64.6%至95.9%。一般而言,下面的死幼苗的百分比大于通过屏障的百分比,使水力覆盖有助于防止幼苗出现的工具和用于管理现场条件下的杂草种子库。 (c)2020提交人。 elsevier有限公司代表IAGRE出版。

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