首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Does long-term heavy cattle manure application increase salinity of a clay loam soil in semi-arid southern Alberta?
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Does long-term heavy cattle manure application increase salinity of a clay loam soil in semi-arid southern Alberta?

机译:长期大量牲畜肥料应用程序吗增加土壤粘壤土的盐度阿尔伯塔省南部半干旱?

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摘要

Livestock manure contains considerable salt and continued application to agricultural land may result in an accumulation of salt in soil. This study reports on the impact of 25 annual cattle feedlot manure applications on soil salinity and soluble salt content and composition of a clay loam soil in the semi-arid region of southern Alberta, Canada. Cattle manure has been applied at rates of 0, 30, 60 and 90 Mg ha(-1) per year under non-irrigated and at 0, 60, 120 and 180 Mg ha(-1) per year under irrigated conditions each fall since 1973. Soil salinity was assessed in the fall each year before manure application by examining the electrical conductivity (EC) using saturated paste extraction methods. The soluble ions, sodium adsorption ratio (SAR) and potassium adsorption ratio (PAR) were also determined each year. Soil EC values increased with the cumulative amount of manure used over the years and the increases were greater under non-irrigated than irrigated conditions. For every tonne of salt applied through the cattle manure, the average soil EC (0-150 cm) increased by 0.1108 dS m(-1) under non-irrigated conditions. The soluble Na+, K+, Mg2+ Cl-, HCO3-, SAR and PAR all increased with the cattle manure application and the increases were greater under non-irrigated than irrigated conditions. On the other hand, under both conditions, Ca2+ decreased in surface soil (0-15 cm) but increased at depths below 30 cut. The K+ ions became the dominant cation in manured surface soil. The increases in EC and soluble ions were lower under irrigation due to greater downward movement. High rates of manure application are not sustainable because they lead to soil salinization under non-irrigated conditions and leaching losses of soluble salts that could potentially pollute groundwater under irrigated conditions.
机译:牲畜粪便含有大量的盐和继续应用农业用地导致土壤中盐的积累。研究报告在25年的牛的影响土壤盐碱化和饲养场肥料应用程序可溶性盐含量和组成的粘土壤土土半干旱地区的南部加拿大阿尔伯塔省。0的利率、30、60和90毫克公顷每年(1)在不受灌溉和(0)120和180毫克公顷(1)每年在灌溉条件下自1973年以来下降。每年秋天在肥料应用程序之前检查电导率(EC)使用饱和粘贴提取方法。离子,钠吸附比(SAR)和钾吸附率(PAR)也被确定的一年。累积多年来使用的肥料和增加更大的下不受灌溉的灌溉条件。每吨盐应用牛肥料,平均土壤EC(0 - 150厘米)增加dS 0.1108 m(1)在不受灌溉条件。SAR和PAR增加牲畜粪便应用程序和增加更大的下不受灌溉的灌溉条件。另一方面,在两种情况下,Ca2 +下降在土壤表面(0-15厘米),但增加了深度低于30。阳离子在施肥土壤表面。EC和可溶性离子较低在灌溉由于更大的向下运动。肥料应用程序是不可持续的,因为它们会导致土壤盐渍化不受灌溉条件和浸出的损失可溶性盐,有可能污染在灌溉条件下地下水。

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