水分胁迫条件下高吸水性聚合物(水凝胶)对李树水分利用参数的影响

Safwat khaled, G. Khalil, M. Ali, M. Harhash, Amal ELSegieny
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引用次数: 0

摘要

本研究是在2019年和2020年连续两个季节对5岁的“凯尔西”李树(Prunus salicina L .)进行的。,在马里亚纳根茎上发芽。这些树被种植在位于埃及比赫拉省西努巴里亚Bostan地区Salah Al-Abd村的一个私人果园的沙土中(后期30.598 和长30.228 )。该研究是为了测试灌溉措施的效果,即在对照处理的基础上,分别以100、80和60%的参考蒸散量(ET 0)和保水材料(水凝胶聚合物)的速率分别为75、100和125 g/棵的barbarary Plant,“BP”和Aqua Gool,“AG”。采用滴灌系统,通过操作时间控制灌溉。结果表明,AG和BP处理均能提高果实产量。与对照(未处理)相比,AG125和BP125处理在产量和产量参数上的显著值最高。2019年和2020年生长期,AG125和BP125分别比对照增产25.65%和27.84%,BP125分别增产22.41%和24.05%。另一方面,果实产量和各项参数在ET 0处理为100%时最高,然后随着灌水量的减少而降低。2019年生长季李树作物蒸散量(ETc)计算值分别为774.1、619.3和464.5 mm,占ET0的100%、80%和60%。2020年生长期的相应值分别为662.3、529.8和397.4 mm。2019年生长季李树的灌溉水用量分别为3251.13、2600.90和1950.68 m 3 /次,分别占ET0的100、80和60%。2020年生长期对应值分别为2920.23、2367.28和1813.06 m3 /饲料。在梅树灌溉水利用效率(IWUE)方面,GA125和BP125处理在第一生长季比对照分别提高了26.63%和21.57%,第二生长季比对照分别提高了27.78%和23.32%。各处理的水分利用效率依次为GA125、BP125、BP100、GA100、BP75、GA75。2019年生长季,在灌溉亏缺条件下,在80%和60%的ET 0条件下,灌溉水利用效率分别比100%的ET 0条件下提高了13.52%和12.90%。2020年生长期对应值分别为12.52%和9.68%。因此,在考虑不完全灌溉应适度的情况下,水凝胶保水和不充分灌溉可作为缺水条件下梅树获得良好产量的适宜策略,并需要研究其对树木生长强度和生产力的长期影响
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of super absorbent polymers (hydrogels) on water use parameters of Plum trees under water stress conditions
: The present study was conducted during two successive seasons 2019 and 2020 on five years old "Kelsey" Plum trees ( Prunus salicina L . ), budded on Mariana rootstock. The trees were planted in sandy soil in a private orchard located in Salah Al-Abd Village, Bostan Area, West Nubaria, Behaira Governorate, Egypt (Lat. 30.598  and Long. 30.228  ). The study was conducted to test the effect of irrigation practices;100, 80, and 60% of reference evapotranspiration (ET 0 ) and water retaining materials (hydrogel polymers) Barbary Plant, "BP" and Aqua Gool, "AG" at rates of 75, 100, and 125 g/tree in addition to the control treatment. The irrigation was controlled via the operating time using the drip irrigation system. The results revealed that fruit yield was improved by the application of AG and BP treatments. The treatments of AG125 and BP125 gave the highest significant values in yield and yield parameters as compared to the control (not treated trees). The increases over the control treatment were 25.65 and 27.84% for AG125 and 22.41 and 24.05% for BP125 in the 2019 and 2020 growing seasons, respectively. On the other side, the highest value of fruit yield and parameters was recorded for 100% of ET 0 treatment and then decreased with decreasing irrigation rate. The calculated crop evapotranspiration (ETc) of Plum trees reached 774.1, 619.3, and 464.5 mm during the 2019 growing season for 100, 80, and 60% of ET0, respectively. The corresponding values for the 2020 growing season are 662.3, 529.8, and 397.4 mm, respectively. The applied irrigation water of Plum trees was 3251.13, 2600.90, and 1950.68 m 3 /fed during the 2019 growing season for 100, 80, and 60% of ET0, respectively. The corresponding values were 2920.23, 2367.28, and 1813.06 m 3 /fed, respectively, for the 2020 growing season. As for the irrigation water use efficiency (IWUE) of Plum trees, the GA125 and BP125 treatments were found to increase IWUE by about 26.63 and 21.57% over the control treatment in the first growing season, respectively while it was 27.78 and 23.32 %, respectively in the second growing season. The treatments in terms of water use efficiency came in descending order as follows GA125, BP125, BP100, GA100, BP75 then GA75. Irrigation water use efficiency was increased under irrigation deficit by about 13.52 and 12.90% for 80 and 60% of ET 0 in the 2019 growing season, respectively as compared to 100% of ET 0 . The corresponding values for the 2020 growing season were 12.52 and 9.68%, respectively. Accordingly, the use of hydrogel as a water preservative and or deficient irrigation can be an appropriate strategy to obtain a good yield of Plum trees under conditions of water shortage, taking into account that the incomplete irrigation should be moderate, with the need to study its long-term effects on the strength of growth and productivity of trees
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