新型保水土壤添加剂

A. Asamatdinov
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引用次数: 6

摘要

高吸水性聚合物水凝胶可以膨胀吸收大量的水或水溶液。这种特性导致了这些新材料的许多实际应用,特别是在农业中,用于改善土壤的保水能力和植物的供水。本文综述了高分子水凝胶的制备方法、性能的测定和处理方法,以及高分子水凝胶在土壤和植物生长中的作用。用于描述聚合物网络膨胀行为的热力学方法被证明对模拟吸水添加剂的水凝胶效率非常有帮助。本文介绍了以“氮”(聚丙烯腈)废纤维、第三过渡金属盐和福尔马林为原料制备水凝胶的理化性质研究结果。对研制的HG- al、HG和HG- cr水凝胶进行了砂体持水性能测试。植物缩略图测定萎蔫点的数据也证实了这一结论。在进入过程中,在大麦培养的沙子中使用0.1%的膨胀聚合物水凝胶剂量,与对照相比,萎蔫点之间的差异可以忽略不计。这表明水凝胶中所含的水分与植物生长的水分有效性有关,其程度与毛细血管中的水分有效性相同。
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New Water-Keeping Soil Additives
Superabsorbent polymer hydrogels can swell to absorb huge volumes of water or aqueous solutions. This property has led to many practical applications of these new materials, particularly in agriculture for improving the water retention of soils and the water supply of plants. This article reviews the methods of polymeric hydrogels, measurements and treatments of their properties, as well as their effects in soil and on plant growth. The thermodynamic approach used to describe the swelling behaviour of polymer networks proves to be quite helpful in modelling the hydrogel efficiency of water-absorbing additives. The paper presents the results of a study of the physical and chemical properties of hydrogels based on of the production of "Nitron" (Polyacrylonitrile) wastes fibre and salts of the 3rd transition metals and formalin. The developed hydrogels HG-Al, HG and HG-Cr have been tested for water holding capacity of sand. Such conclusion was also confirmed by data from the method of determining the wilting point by vegetative thumbnails. In the entering process using a dose of 0.1% of the swelling polymeric hydrogel in sand with a culture of barley the difference between the wilting point in comparison with the control was negligible. This indicates that the moisture which was contained in the hydrogel is involved in moisture availability for plant growth, to the same extent as that in the capillaries.
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