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Impact of Leaching on Sustainability of Sorghum on Dune Sand Under Saline Drip Irrigation Water

机译:盐渍灌溉下淋溶对沙丘高粱可持续性的影响。

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In a greenhouse study, sorghum ( Sorghum bicolor (L) Moench) was grown on dune sand with drip irrigation using water with four different levels of salinity (5.40, 7.32, 9.40, and 12.50 dS m -1 ) and normal water as a control for two seasons. At the start of the second season, the soil was leached using either 25 mm of normal water or 25 and 50 mm of saline water four times in two weeks. Using time domain reflectometry (TDR), soil water electrical conductivity (ECsw) in the root zone was monitored during both seasons. The daily ECsw, matched against the FAO threshold (13.6 dS m -1 ), indicated the possibility that the crop was exposed to salinity stress under irrigation with different levels of salinity. The salinity stress was higher in the second season as compared to the first season. While the soil salinity was reduced by leaching with normal water, there was no difference (p 0.005) in the salinity when two levels of saline water were used. Although there was no water stress, the significant reduction in yield with the use of saline water for irrigation, as compared with the control, is attributed to salt input. The results indicate that leaching with saline water just before the start of the second season could have reduced the salinity of the sandy soil. However, the reduction in salinity was greater under leaching with normal water. The amount of normal water required for leaching is rather less than 25 mm, and this amount can easily be collected by water harvesting from rainfall in the semiarid region
机译:在温室研究中,使用四种不同盐度(5.40、7.32、9.40和12.50 dS m -1 )的水通过滴灌在高沙丘沙上种植高粱(Sorghum bicolor(L)Moench)。 )和正常水质作为两个季节的对照。在第二个季节开始时,在两周内用25毫米的普通水或25毫米和50毫米的盐水淋洗土壤四次。使用时域反射仪(TDR),在两个季节中都监测了根区的土壤水电导率(ECsw)。每天的ECsw与FAO阈值(13.6 dS m -1 )相匹配,表明作物在不同盐度水平下的灌溉下都可能遭受盐分胁迫。与第一季相比,第二季的盐分压力更高。虽然用普通水淋洗可降低土壤盐分,但当使用两种水平的盐水时,盐分没有差异(p <0.005)。尽管没有水分胁迫,但是与对照相比,使用盐水灌溉的单产显着降低,这归因于盐分的输入。结果表明,在第二个季节开始之前用盐水浸出可能会降低沙土的盐度。但是,用普通水浸出后盐度的降低更大。淋滤所需的正常水量少于25毫米,可以很容易地通过半干旱地区的降雨收集水来收集该水量

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