韩玉国,武亨飞,杨培岭,丁 涛,辛显华,孙 敏,宋 贺,李延云.保水剂对土壤的物理性质与水分入渗的动态影响[J].干旱地区农业研究,2013,31(5):161~167
保水剂对土壤的物理性质与水分入渗的动态影响
Dynamic effects of Super Absorbent Polymer on physical properties and water infiltration of soil
  
DOI:10.7606/j.issn.1000-7601.2013.05.027
中文关键词:  保水剂  饱和含水率  饱和导水率  扩散率  入渗模拟
英文关键词:Super Absorbent Polymer  saturated water content  saturated hydraulic conductivity  soil water diffusivity  infiltration simulation
基金项目:北京林业大学青年科技启动基金(BLX2011009);国家自然科学基金重点资助项目(51239009)
作者单位
韩玉国1,武亨飞2,杨培岭3,丁 涛4,辛显华4,孙 敏4,宋 贺4,李延云4 (1.北京林业大学水土保持学院 北京 100083 2.长江勘测规划设计研究有限责任公司 湖北 武汉 4300103.中国农业大学水利与土木工程学院 北京 100083 4.内蒙古巴彦淖尔市水利水电勘测设计院 内蒙古 巴彦淖尔 015000) 
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中文摘要:
      保水剂在农业上的应用对于缓解干旱具有重要的意义,但其应用后会发生降解而最终失去保水作用,因此了解其在降解过程中引起的土壤物理性质的动态变化及水分运动的机理,是其能否正确应用的关键,本试验以保水剂在农业应用中的典型用量为基础,研究了保水剂对土壤的物理性质动态影响及一维土壤水分。结果表明,保水剂施入土壤后其性能不断衰减是导致土壤物理性质不断变化的最根本原因;土壤中施用保水剂后土壤的质量饱和含水率明显增加,饱和导水率降低,但随着保水剂性能的逐渐衰减,饱和含水率呈现下降趋势,饱和导水率呈现上升趋势;施入保水剂后土壤的扩散率是一个曲面,并且随着保水剂自身性能的衰减,呈现逐渐扩展的趋势;施用保水剂后土壤入渗的湿润锋前进速度下降,这主要是由于施用保水剂土壤的饱和含水量增加和保水剂膨胀堵塞土壤孔隙造成的;通过对施用保水剂土壤的扩散率和导水率的分时段研究,最终建立施用保水剂土壤的一维水分运动方程,试验证明其可行,且精度在允许的范围内。
英文摘要:
      Super Absorbent Polymer (SAP) is of important significance in mitigating agricultural drought. However, its role in water retention ultimately fades away due to its degradation after application. Therefore, the investigation of the dynamic change of soil physical properties and the mechani sm of moisture movement caused by degradation of SAP is the key for its proper application. Based on the typical amount of SAP used in agriculture, the dynamic impacts of SAP on soil physical properties and one dimensional soil moisture were analyzed. The results showed that the attenuation of SAP performance after its application into soil was the most fundamental reason for the constant change of soil physical properties. After treated with SAP, the saturated mass water content of soil was significantly increased, and the saturated hydraulic conductivity was reduced. However, as the SAP performance attenuated, the saturated moisture content showed a downward trend and the saturated hydraulic conductivity showed an upward trend. After treated with SAP, the water diffusivity of soil exhibited a curved surface and showed a gradually expanding trend with the attenuation of its performance. The forward speed of moist sharp point of infiltration in SAP treated soil was reduced, which was mainly because that the saturated moisture content of soil was increased and the soil pores were clogged due to the expansion of SAP after it was applied. By investigating the water diffusivity and hydraulic conductivity of SAP treated soil at different time periods, a one dimensional water movement equation was finally established. It was proved to be feasible with the accuracy within an allowable range.
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