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Aeration of clayey soils by injecting air through subsurface drippers: Lysimetric and field experiments

机译:通过地下滴头注入空气对黏性土壤进行通气:渗水法和田间试验

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摘要

We examined the effects of air injection into clayey-soil, with and without a perforated sphere around the dripper, on oxygen concentrations and pepper yields in a barrel experiment, and on soil oxygen concentrations and stem growth of young mango trees in a field experiment. The perforated sphere was intended to reduce soil resistance to air flow and to enhance the efficiency of air spreading in the soil. The main findings were that injecting atmospheric air did not contribute much to aeration of soils with high existing oxygen concentrations, i.e., about 80% of the atmospheric 21%, in the barrel experiments, and did not contribute at all in the field experiment, where oxygen concentration was about 95% of atmospheric. Furthermore, it was found that an oxygen concentration of about 80% did not decrease pepper yield in the absence of other stresses such as salinity or nutrients deficiency. A perforated sphere increased soil oxygen concentration when both water and air were applied through the sphere. A positive effect of air injection on pepper yields was found in soils with high volumetric water contents, i.e., average above 0.4 throughout the growth period. Conversely, air injection decreased pepper yields in barrels where water contents were lower. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们在桶装实验中检查了在有无滴头周围有多孔球体的情况下,向粘稠土壤中注入空气对桶装试验中氧浓度和胡椒产量以及田间试验对芒果中土壤氧浓度和茎生长的影响。多孔球旨在降低土壤对气流的阻力,并提高空气在土壤中传播的效率。主要发现是,在桶装实验中,注入大气不会对现有氧气浓度高的土壤通气做出很大贡献,即约占大气21%的大气的80%,而在野外实验中根本没有贡献氧气浓度约为大气的95%。此外,发现在没有其他压力例如盐度或营养缺乏的情况下,约80%的氧浓度不会降低胡椒产量。当水和空气都通过多孔球体时,多孔球体会增加土壤中的氧气浓度。在高体积水含量的土壤中发现了空气注入对胡椒产量的积极影响,即整个生长期平均水含量高于0.4。相反,空气注入会降低含水量较低的桶中的胡椒产量。 (C)2016 Elsevier B.V.保留所有权利。

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