首页> 外文OA文献 >Reactions of urea phosphate in calcareous and alkaline soils: Ammonia volatilization and effects on soil sodium and salinity.
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Reactions of urea phosphate in calcareous and alkaline soils: Ammonia volatilization and effects on soil sodium and salinity.

机译:钙质和碱性土壤中磷酸脲的反应:氨挥发及其对土壤钠和盐分的影响。

摘要

Nitrogen (N) loss in the form of volatilized ammonia (NH₃) is a considerable problem when ammonium (NH₄⁺) forming fertilizers are applied to calcareous or alkaline soils. Large areas of agricultural land, contain alkalinity and salinity problems, are potentially suitable for crop production with little alteration. This study was conducted to determine and compare the effectiveness of urea phosphate (UP) in reducing soil alkalinity and NH₃ loss. The volatilization of NH₃ from UP and urea (U) was studied on 3 selected soils (Hayhook SL, Laveen L and Latene L) using an aeration system. Urea phosphate and U were each applied at rates of 0, 50, 100 and 200 ppm-N either to the surface dry or in solution or mixed with the soil. The volatilized NH₃ was trapped in sulfuric acid, sampled periodically and analyzed for N using the semi microkjeldahl distillation apparatus. The effect of UP, Sulfur-Foam (SF), Phosphuric Solution (PHP) and a mixture of SF and UP (Mix) on leaching soil sodium (Na) and salinity was also studies on two soils (Pima L and Crot CL) in columns. Each of these amendments was applied at a rate of one and two equivalent amounts of the exchangeable Naₑₓ. The highest N loss in the form of NH₃ occurred when U was applied to Hayhook soil. However, UP applied to Hayhook soil (neutral to acidic, coarse textured and low CaCO₃ content) resulted in the lowest NH₃-N loss. Less NH₃-N loss was found from U application to Laveen and Latene soils (fine textured with higher CaCO₃ content) than with Hayhook soil. The general trend was higher N loss, in the form of volatilized NH₃, with surface application dry or in solution than when mixed with the soil. This trend showed an increase in the amount of volatilized NH₃ with increasing rate of N application. Urea phosphate was as effective as PHP or Mix (acid containing fertilizers) treatments in reducing soil salinity and alkalinity in Pima and Crot soils. No difference was found between rates of application (1 and 2 equivalent amount of Naₑₓ) except for soil pH. A similar trend in the decrease in soil salinity was found to that of the pH which was in the order PHP, UP, Mix, SF and control treatments. No significant difference was found between SF and control treatments in all parameters. No significant difference was found between treatments for exchangeable Ca. This was affected by the Ca compounds present in the soil. Generally, UP is a potential fertilizer for supplying N and phosphorus (P) as plant nutrients, reducing NH₃ volatilization, and can be used as a soil amendment to control soil salinity and alkalinity.
机译:当将形成铵(NH 3)的肥料施用到钙质或碱性土壤上时,挥发性氨(NH 3)形式的氮(N)损失是一个相当大的问题。大面积的农业用地,存在碱度和盐度问题,可能几乎不需改变就适合农作物生产。进行这项研究是为了确定和比较磷酸脲(UP)在降低土壤碱度和NH 3损失方面的有效性。使用曝气系统在3种选定的土壤(Hayhook SL,Laveen L和Latene L)上研究了UP和尿素(U)中NH3的挥发。分别以0、50、100和200 ppm-N的比例将磷酸脲和U施用到干燥的表面或溶液中或与土壤混合。将挥发的NH 3捕集在硫酸中,定期取样,并用半微量凯氏蒸馏仪分析氮含量。还在两种土壤(Pima L和Crot CL)上研究了UP,硫泡沫(SF),磷溶液(PHP)以及SF和UP(Mix)混合物对钠(Na)和盐分淋溶的影响。列。这些修正案中的每一项都以可兑换的Naₑₓ的一倍和两当量的比率应用。当U施用到Hayhook土壤上时,以NH 3形式出现的最高氮流失发生。但是,将UP施用到Hayhook土壤上(中性至酸性,粗糙的质地和低的CaCO 3含量)导致最低的NH 3-N损失。施用铀到Laveen和Latene土壤(具有较高CaCO 3含量的细纹理)的土壤中,发现的NH₃-N损失少于Hayhook土壤。总的趋势是,以挥发的NH 3形式存在的氮损失较高,与土壤混合时表面干燥或以溶液形式施用。这种趋势表明,随着施氮量的增加,NH 3的挥发量也随之增加。磷酸尿素在降低皮马和C土壤的盐度和碱度方面,与PHP或Mix(含酸肥料)处理一样有效。除土壤pH值外,施用量(Na 2当量为1和2)之间没有发现差异。发现土壤盐度下降的趋势与pH的下降趋势相似,依次为PHP,UP,混合,SF和对照处理。在所有参数中,SF和对照治疗之间均未发现明显差异。在可交换钙的处理之间未发现显着差异。这受到土壤中存在的钙化合物的影响。通常,UP是一种潜在的肥料,可以提供N和磷(P)作为植物养分,减少NH 4的挥发,并且可以用作土壤改良剂以控制土壤的盐度和碱度。

著录项

  • 作者

    Ali Abdul-Mehdi Saleh.;

  • 作者单位
  • 年度 1989
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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