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Viscoelastic Properties of Soil with Different Ammonium Nitrate Addition

机译:不同硝酸铵添加的土壤粘弹性

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Four different soils samples were taken from not cultivated recreational places. Particle-size distribution and pH (in water and in 1 M KCl) of the soil samples were measured. Soil samples were saturated with deionized water and solution of ammonium nitrate with the concentration of 5, 50 or 500 mM for 3 days. The samples were analyzed using dynamic oscillatory rheometer by frequency and strain sweeps. Soil samples were similar to physical gels, as they presented rheological properties between those of a concentrated biopolymer and a true gel. 50 mM concentration of the salt was enough to make changes in the elasticity of the soils. Small concentration of the fertilizer caused weakening of the soil samples structure. Higher concentration of ammonium nitrate caused the increase in the moduli crossover strain value. For the loam sample taken from a playground, with the highest content of the particles & 0.002 mm (clay aluminosilicates), the lowest value of strain was observed at the moduli intersection. Lower strain value was necessary for the sliding shear effect of soil A sample effecting transgression to the "flowing" state. Strain sweep moduli crossover point can be used as a determinant of the rheological properties of soil.
机译:从未培养的娱乐场所取出四种不同的土壤样品。测量粒度分布和pH(在水中和1M KCl)的土壤样品。将土壤样品用去离子水饱和,硝酸铵溶液,浓度为5,50或500mm 3天。使用动态振荡流变仪通过频率和应变扫描分析样品。土壤样品与物理凝胶相似,因为它们在浓缩的生物聚合物和真正凝胶之间呈现流变性质。 50mM浓度的盐足以使土壤弹性变化。小浓度的肥料引起了土壤样品结构的弱化。较高浓度的硝酸铵导致模态交叉菌株的增加。对于从操场采取的壤土样品,具有最高颗粒含量和amp; LT; LT; 0.002mm(粘土硅酸盐),在模量交叉处观察到菌株的最低值。土壤对“流动”状态的样品对“流动”状态的迁移的滑动剪切效应是较低的应变值。应变扫描模量交叉点可用作土壤流变性质的决定因素。

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