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作 者:李康勇[1] 牛文全[1,2] 张若婵[1] 刘璐[2,3]
机构地区:[1]西北农林科技大学水利与建筑工程学院,杨凌712100 [2]西北农林科技大学水土保持研究所,杨凌712100 [3]宝鸡文理学院,宝鸡721000
出 处:《农业工程学报》2015年第17期81-90,共10页Transactions of the Chinese Society of Agricultural Engineering
基 金:国家支撑计划课题(2015BAD24B01);自然科学基金项目(51379024)
摘 要:为探究水肥一体化灌溉过程中,施肥对滴头堵塞的影响,分别配置了4个施肥浓度(0,0.4,0.6和1.2 g/L),3种泥沙级配,进行浑水间歇灌水堵塞试验,并用场发射扫描电镜分析了堵塞物的结构与成分。结果表明:施肥对于迷宫滴头堵塞具有明显的加速作用,施肥浓度越大,加速堵塞效果越明显,当施肥1.2 g/L时,3种级配浑水的有效灌水次数比未施肥的对照处理分别下降了36.4%,77.8%和78.8%;当施肥0.4 g/L时,有效灌水次数分别下降9.1%、33.3%和14.3%,施肥浓度≤0.4 g/L时,加速滴头堵塞的效果较小。浑水中增加化肥增强了水体中泥沙颗粒间的絮凝作用,促进了稳定而致密团聚体的形成,这是施肥加速滴头堵塞的主要原因;施肥后堵塞物表面结构复杂程度增加,堆积体间隙减小,堵塞以完全堵塞为主。该试验结果为水肥一体化滴灌技术推广提供理论依据。Integrated drip irrigation and fertilizer technology develops rapidly due to its advantages of high efficiency, water saving, ability to adapt to the terrain and so on, but fertilizer may cause the clogging of drip emitter, which draws much attention. In order to explore the influence of fertilizer on emitter clogging in the process of fertigation, a periodic intermittent experiment was carried out. Three particle gradations and four fertilizer concentrations(0, 0.4, 0.6, and 1.2 g/L) were desgined. The drip irrigation with fertilizer and muddy water of different particle gradations as conducted for 30 min each time under working pressure of 40 k Pa. After 4 hours, the irrigation was redone. Then the relative flow rate of emitter and its uniformity were determined. After the experiment, the clogging positions of emitters were recorded. The drip tape was air-dried for 4 months for measurements of clogging status. The complete clogged emitters were used for observation by field emission scanning electron microscopy(FESEM) to analyze the structure and composition of the blockage. The results demonstrated that fertigation had an obvious acceleration effect on emitter clogging, and effect was more obvious in fertilizer solution with high concentration. When the application rate of fertilizer was 1.2 g/L, the effective irrigation times of muddy water with 3 different particle gradations decreased by 36.4%, 77.8% and 78.8% respectively; when the application rate of fertilizer was 0.4 g/L, the effective irrigation times of muddy water with 3 different particle gradations decreased by 9.1%, 33.3% and 14.3% respectively. The acceleration effect of fertilizer application on emitter was most non-obvious when the concentration of fertilizer solution was less than 0.4 g/L. The acceleration effect of fertilizer on emitter clogging was influenced by particle gradation. As for the drip tap selected in the test, the acceleration effect was more obvious in particles with dominated by 0.034-0.067 mm. Without fertilization, t
分 类 号:S275.6[农业科学—农业水土工程]
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