首页> 外文会议>STP 1470; Symposium on Pesticide Formulations and Delivery Systems, 25th volume: Advances in Crop Protection Technologies; 20041005-7; Washington,DC(US) >Improving the Infiltration of Water through Repellent Soils Using Synergistic Surfactant Blends Based on Alkyl Glucosides and Ethylene Oxide-Propylene Oxide Block Copolymers
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Improving the Infiltration of Water through Repellent Soils Using Synergistic Surfactant Blends Based on Alkyl Glucosides and Ethylene Oxide-Propylene Oxide Block Copolymers

机译:使用基于烷基糖苷和环氧乙烷-环氧丙烷嵌段共聚物的增效表面活性剂共混物改善拒水土壤的渗透性

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Soil water repellency arises as a consequence of initial soil water content and the type of organic matter incorporated into or adsorbed onto the individual soil particles. Water repellent soils create significant agronomic and hydrologic challenges, retarding water infiltration into the soil profile and often rendering entire areas impervious to water penetration. These soils often prevent effective wetting of the rootzone during precipitation or irrigation and lead to increased runoff and leaching of pesticides, fertilizers, and other amendments. Agriculturalists have approached the soil water repellency problem through the use of wetting agent surfactant compositions. The degree of wetting efficacy among surfactant chemistries and formulations has varied significantly. The wetting characteristics of alkyl glucosides and ethylene oxide-propylene block copolymers, two nonionic surfactant classes, were evaluated in the context of improving the infiltration of water through water repellent soil profiles. A laboratory column test was used to measure the initial effectiveness of the wetting agent compositions on synthetically hydrophobized and naturally water repellent soils. A synergistically enhanced wetting rate occurred when the alkyl glucoside to block copolymer ratio was from approximately 6:1 to 0.5:1 by weight, ideally when the ratio was from approximately 4:1 to 0.7:1. Within these ratios, synergism was inversely proportional to the HLB and proportional to the molecular weight of the block copolymer used. This research is the first to demonstrate the promising effects of formulations comprising alkyl glucosides and EO/PO block copolymers on improving the distribution and dynamics of water in repellent soils.
机译:土壤憎水性是由于初始土壤含水量以及掺入或吸附到各个土壤颗粒中的有机物类型而产生的。拒水土壤给农业和水文学带来了巨大挑战,阻碍了水分向土壤剖面的渗透,并经常使整个区域无法渗透水。这些土壤经常会在降水或灌溉期间阻止根区有效润湿,并导致径流增加以及农药,化肥和其他改良剂的淋溶。农业学家已经通过使用润湿剂表面活性剂组合物解决了土壤疏水性问题。在表面活性剂化学和制剂之间的润湿效力程度已显着变化。在改善水通过憎水土壤剖面的渗透性的背景下,评估了烷基葡糖苷和环氧乙烷-丙烯嵌段共聚物(两种非离子表面活性剂)的润湿特性。使用实验室柱测试来测量润湿剂组合物在合成疏水化和天然疏水性土壤上的初始效力。当烷基葡糖苷与嵌段共聚物的重量比为约6:1至0.5:1时,理想地当该比例为约4:1至0.7:1时,发生协同提高的润湿速率。在这些比例内,协同作用与HLB成反比,与所用嵌段共聚物的分子量成反比。这项研究首次证明了包含烷基葡糖苷和EO / PO嵌段共聚物的配方对改善拒水土壤中水的分布和动力学的影响。

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