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首页> 外文期刊>Research journal of applied science, engineering and technology >The Impact of Different Fertigation Practices and Initial Soil Salinity on Soil N and Salinity Transport
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The Impact of Different Fertigation Practices and Initial Soil Salinity on Soil N and Salinity Transport

机译:不同辐射实践和初始土壤盐度对土壤和盐度运输的影响

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摘要

For studying the impact of different fertigation practices and initial soil salinity on soil N and salinity transport, large Plexi-glass columns (18.2 cm in diameter and 100 cm long) assembled from sandy loam (Inner Mongolia) and saturation optimum design were employed to simulate a range of initial soil salinity conditions in soil profile and fertigation practices. (4~8 L) solution with 20 g urea dissolved was applied evenly and slowly to the surface of each column. Nitrate and ammonium nitrogen in soil and discharge from the outlet were sampled and the electrical conductivity of soil and the chloride ion concentration of discharges were also measured. Findings from this study include: (1) high initial salinity in soil had a certain impact on the changes of water content of vertical soil section with the time being after large amount of water irrigation and it might increase the rate of infiltration; (2) the amount of irrigation water significantly affected the transport of soil salinity; (3) high soil salinity content was likely to promote the conversion of urea nitrogen to ammonium nitrogen and it might also play an active role in ammonium nitrogen accumulation in drainage; (4) There is a sound linear relation between the cumulative content of chloride ion and that of nitrate nitrogen in the drainage and soil profile (r2 = 0.8221 and 0.7442).
机译:用于研究不同辐射实践和初始土壤盐度对土壤N和盐度的影响,采用桑迪壤土(内蒙古)和饱和优化设计组装的大石列玻璃柱(直径18.2厘米,长度和100厘米长)模拟土壤轮廓和培养实践中的一系列初始土壤盐度条件。 (4〜8L)用20g尿素溶解的溶液均匀且缓慢地涂覆到每柱的表面上。取样土壤中的硝酸铵和氮氮,还测量了土壤的导电性和排出的氯离子浓度。本研究的结果包括:(1)土壤中的高初始盐度对垂直土壤含水量的变化有一定的影响,随着大量的水灌溉,它可能会增加渗透率; (2)灌溉水量显着影响土壤盐度的运输; (3)高土壤盐度含量促进尿素氮的转化为氮氮,也可能在排水中的氮氮积累中发挥积极作用; (4)在排水和土壤曲线中,氯离子的累积含量与硝酸盐氮的累积含量之间存在声音关系(R2 = 0.8221和0.7442)。

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