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Seasonal variations of transpiration efficiency coefficient of irrigated wheat

机译:灌溉小麦蒸腾效率系数的季节变化

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摘要

Global diminishing water resources, especially due to climate change have serious impacts on evaporation (E) from the soil surface, transpiration (T) from plants (crops) and grain yield, which relates to water use efficiency of different crops. A study was conducted at Kenilworth over two wheat cropping seasons (2007 and 2008) with the objectives of: (i) evaluating the effect of soils and seasons on T, E and yield, and (ii) relating these parameters to transpiration efficiency coefficient. The treatments included two soil types and two soil surface treatments (bare and mulched), which were all replicated four times. Weekly irrigation was done using a surface drip system while maintaining the water table at a constant depth. Soil water content was monitored using a neutron probe. Neither soils nor seasons were found to significantly influence the partitioning of evapotranspiration (ET), and T varied from 74 to 76% of ET while E varied between 24 and 26%. Surface treatments caused significant differences in grain yield in both seasons. Reducing evaporative loss improves the water productivity of wheat, which has an important implication in dryland farming.
机译:全球递减水资源,特别是由于气候变化对来自土壤表面,来自植物(作物)的蒸发(e)的蒸发(e)产生严重影响,涉及不同作物的水利用效率。在肯尼斯在两麦种植季节(2007年和2008)上进行了一项研究,其中包括:(i)评估土壤和季节对T,E和产量的影响,(ii)将这些参数与蒸腾效率系数相关联。该治疗包括两种土壤类型和两种土壤表面处理(裸露和覆盖),全部复制四次。每周灌溉使用表面滴水系统完成,同时保持水位处于恒定深度。使用中子探针监测土壤含水量。没有发现土壤和季节显着影响蒸散散热(ET)的分配,并且T从ET的74倍至76%,而E在24和26%之间变化。表面处理引起了两个季节的谷物产量的显着差异。减少蒸发损失提高了小麦的水生产率,这在旱地耕种中具有重要意义。

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