埃及干旱条件下氮肥与有机覆盖对番茄生产力和水分生产力提高的田间与模拟研究

E. HamzaA., E. EgelaM.
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摘要

由于埃及的水资源有限,而且它位于世界上最干旱的地区,再加上气候变化和气温上升对灌溉作物所需水量的增加产生了负面影响,我们有必要考虑应用最可持续的技术,这将以环保的方式面对所有这些挑战。最可持续、最廉价和最可行的技术之一是有机农业废物的回收利用,从中可以生产有机肥料,也可以用作有机地膜,作为塑料地膜的可持续替代品。在埃及干旱条件下,研究了有机覆盖和氮肥综合处理下的土壤水分含量(SMC)、水分利用效率(WAE)、土壤有机质含量(SOMC)、微生物活性(AM)、土壤电导率(SEC)、产量(Y番茄)和番茄水分生产力(WP番茄),并采用SALTMED模拟模型对上述评价标准进行了建模。结果表明,有机地膜的施用降低了土壤的蒸发速率,使土壤表面尽可能长时间保持湿润,减少了沙质土壤中盐分的积累,保护了土壤表面和根区免受不断增加的水盐胁迫。综合施氮提高了有机组分的添加比例。施用有机地膜和综合施氮可提高土壤SMC、WAE、SOMC,提高生物活性,降低土壤盐分积累。它结合了这些技术的应用,在灌溉用水有限和干旱的干燥沙质土壤中保持、增加和提高番茄和其他作物的生产力的所有令人鼓舞的好处。研究结果表明,有机覆盖和综合施氮可提高番茄的生产力和水分生产力,其中有机覆盖和添加50%有机氮+ 50%无机氮肥时最高。结果还表明,SALTMED模拟模型在模拟埃及沙质土壤下滴灌系统所研究的评价标准方面具有准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field and Modeling Study for Integrated N-Fertilization and Organic Mulching to Improve the Productivity and Water Productivity of Tomatoes under Arid Egyptian Conditions
Due to the limited water resources in Egypt and its occurrence in the driest areas in the world, in addition to climatic changes and rising temperatures, which negatively affect the increase in water needs required to irrigate crops, it was necessary for us to think about applying the most sustainable technologies available, which will face all these challenges in an environmentally friendly manner. One of the most sustainable, cheap and available techniques is the recycling of organic agricultural waste, from which organic fertilizers can be produced and also can be used as organic mulching as a sustainable alternative to plastic mulching. Soil moisture content (SMC),Water application efficiency (WAE), soil organic matter content (SOMC), and activity of microorganisms (AM), soil electrical conductivity (SEC), yield (Y Tomato ) and water productivity of tomato (WP Tomato ) are investigated with organic mulching and integrated N-fertilization treatments under dry Egyptian conditions and also, the previous evaluation criteria were modeled using the SALTMED simulation model. The results indicated that, using of organic mulching also led to a decrease in the evaporation rate thus, the soil surface remains moist for as long as possible, and the accumulation of salts in sandy soils decreases which mean, protecting the soil surface and the root zone from increasing water and salt stress. The results also showed the importance of the integrated nitrogen fertilization, which increases the proportion of adding the organic component. Using of organic mulching and integrated nitrogen fertilization led to an increase in the SMC, WAE, SOMC and an increase in biological activity, as well as a decrease in the accumulation of salts in the soil. It combines with the application of these techniques all the encouraging benefits of sustaining, increasing and improving the productivity of tomatoes and any other crop in dry sandy soils with limited irrigation water and drought. The study concluded that relying on organic mulching and integrated nitrogen fertilization increased the productivity and water productivity of tomatoes, where the highest values were when using organic mulching and adding 50% of organic nitrogen + 50% of mineral nitrogen fertilizers. The results also showed the accuracy of the SALTMED simulation model in simulating the evaluation criteria that were studied using drip irrigation system under sandy soils in Egypt.
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