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Eco-friendly Improvement of Water Erosion Resistance of Unstable Soils with Biodegradable Polymers

机译:生物降解聚合物不稳定土壤水蚀抗腐蚀性的环保改善

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The improvement of water erosion resistance of soils is gaining the attention of the scientific community. Erosion represents a threat to agricultural productivity because of the loss of valuable superficial soil and nutrients. Cultivation soils erosion is one of the main contributors to the desertification process, which is, itself, a global problem. Recently, polysaccharides have been tested as additives to improve earth construction materials with respect to their mechanical properties and water erosion resistance. This paper studies the use of biodegradable polymers to improve soil stabilization with respect to erosion by water. Aqueous solutions of the polysaccharides chitosan and carrageenan were used to improve wettability and runoff resistance of sandy and loose soils. Chitosan becomes positively charged when dissolved in dilute acidic solutions, while carrageenan becomes negatively charged. Their capacity to form polyelectrolytes in aqueous solutions may be a contributor in retaining cohesiveness in loose soils.
机译:土壤水蚀抗蚀性的提高正在获得科学界的关注。由于失去了有价值的浅表土壤和营养素,侵蚀代表了对农业生产率的威胁。栽培土壤侵蚀是荒漠化进程的主要贡献者之一,这本身就是全球问题。最近,多糖已经被视为添加剂,以改善地球建筑材料的机械性能和水蚀抗性。本文研究了可生物降解的聚合物的用途,以改善水的侵蚀土壤稳定化。多糖壳聚糖和角叉菜胶的水溶液用于改善含沙和松散土壤的润湿性和径流抗性。当溶解稀酸性溶液时,壳聚糖在溶解时被带正电,而卡拉胶蛋白烷变得带负电。它们在水溶液中形成聚电解质的能力可能是在松散土壤中保持粘合性的原因。

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