首页> 外文期刊>Spanish Journal of Agricultural Research >Effectiveness of inorganic and organic mulching for soil salinity and sodicity control in a grapevine orchard drip-irrigated with moderately saline waters.
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Effectiveness of inorganic and organic mulching for soil salinity and sodicity control in a grapevine orchard drip-irrigated with moderately saline waters.

机译:无机和有机覆盖对滴灌中度盐水的葡萄园土壤盐碱度和碱度的控制作用。

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摘要

Soil mulching is a sensible strategy to reduce evaporation, accelerate crop development, reduce erosion and assist in weed control, but its efficiency for soil salinity control is not as well documented. The benefits of inorganic (plastic) and organic (grapevine pruning residues) mulching for soil salinity and sodicity control were quantified in a grapevine orchard (cultivars 'Autumn' Royal and 'Crimson') drip-irrigated with moderately saline waters. Soil samples were taken at the beginning and end of the 2008 and 2009 irrigation seasons in six vines of each cultivar and mulching treatment. Soil saturation extract electrical conductivity (ECe), chloride (Cle) and sodium adsorption ratio (SARe) values increased in all treatments of both grapevines along the irrigation seasons, but the increases were much lower in the mulched than in the bare soils due to reduced evaporation losses and concomitant decreases in salt evapoconcentration. The absolute salinity and sodicity daily increases in 'Autumn' and 'Crimson' 2008 and in 'Crimson' 2009 were on the average 44% lower in the plastic and 76% lower in the organic mulched soils than in the bare soil. The greater efficiency of the organic than the plastic mulch in 'Crimson' 2009 was attributed to the leaching of salts by a precipitation of 104 mm that infiltrated the organic mulch but was intercepted by the plastic mulch. Although further work is needed to substantiate these results, the conclusion is that the plastic mulch and, particularly, the organic mulch were more efficient than the bare soil for soil salinity and sodicity control.
机译:覆盖土壤是减少蒸发,加速作物生长,减少侵蚀和辅助杂草控制的明智策略,但其土壤盐分控制的效率尚未得到充分证明。无机(塑料)和有机(葡萄树修剪残留物)覆盖对土壤盐分和碱度控制的好处在滴灌有适度盐水的葡萄果园(品种“ Autumn” Royal和“ Crimson”)中进行了量化。在2008年和2009年灌溉季节的开始和结束时,在每个品种的六个葡萄树中进行土壤采样,并进行覆盖处理。在所有处理中,土壤饱和提取物的电导率(EC e ),氯化物(Cl e )和钠吸附率(SAR e )值均增加。两个葡萄藤都沿着灌溉季节生长,但是由于蒸发损失减少以及盐分蒸发浓度随之降低,因此覆盖土壤中的增加要比裸露土壤中的增加要低得多。与裸土相比,2008年“秋季”和“深红色”以及2009年“深红色”中的绝对盐度和盐度每日平均降低了44%,而有机覆盖土降低了76%。 “ Crimson” 2009年有机覆盖物的效率高于塑料覆盖物,这是由于104毫米的沉淀物渗入了有机覆盖物,但被塑料覆盖物截取了盐分,从而浸出了盐分。尽管需要进一步的工作来证实这些结果,但结论是,塑料覆盖物,特别是有机覆盖物比裸露土壤更有效地控制盐分和碱度。

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