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土壤特性和磷水平对径流中磷流失的影响。

Soil characteristics and phosphorus level effect on phosphorus loss in runoff.

作者信息

Davis Randall L, Zhang Hailin, Schroder Jackie Lee, Wang Jim J, Payton Mark E, Zazulak Anne

机构信息

Apex Environmental Inc., Lenexa, KS 66215, USA.

出版信息

J Environ Qual. 2005 Aug 9;34(5):1640-50. doi: 10.2134/jeq2004.0480. Print 2005 Sep-Oct.

Abstract

The loss of phosphorus (P) in runoff from agricultural soils may accelerate eutrophication in lakes and streams as well as degrade surface water quality. Limited soil specific data exist on the relationship between runoff P and soil P. This study investigated the relationship between runoff dissolved reactive phosphorus (DRP) and soil P for three Oklahoma benchmark soils: Richfield (fine, smectitic, mesic Aridic Argiustoll), Dennis (fine, mixed, active, thermic Aquic Argiudoll), and Kirkland (fine, mixed, superactive, thermic Udertic Paleustoll) series. These soils were selected to represent the most important agricultural soils in Oklahoma across three major land resource areas. Surface soil (0-15 cm) was collected from three designated locations, treated with diammonium phosphate (18-46-0) to establish a wide range of water-soluble phosphorus (WSP) (3.15-230 mg kg(-1)) and Mehlich-3 phosphorus (M3P) (27.8-925 mg kg(-1)). Amended soils were allowed to reach a steady state 210 d before simulated rainfall (75 mm h(-1)). Runoff was collected for 30 min from bare soil boxes (1.0 x 0.42 m and 5% slope) and analyzed for DRP and total P. Soil samples collected immediately before rainfall simulation were analyzed for the following: M3P, WSP, ammonium oxalate P saturation index (PSI(ox)), water-soluble phosphorus saturation index (PSI(WSP)), and phosphorus saturation index calculated from M3P and phosphorus sorption maxima (P(sat)). The DRP in runoff was highly related (p < 0.001) to M3P for individual soil series (r2 > 0.92). Highly significant relationships (p < 0.001) were found between runoff DRP and soil WSP for the individual soil series (r2 > 0.88). Highly significant relationships (p < 0.001) existed between DRP and different P saturation indexes. Significant differences (p < 0.05) among the slopes of the regressions for the DRP-M3P, DRP-WSP, DRP-PSI(ox), DRP-PSI(WSP), and DRP-P(sat) relationships indicate that the relationships are soil specific and phosphorus management decisions should consider soil characteristics.

摘要

农业土壤径流中磷(P)的流失可能会加速湖泊和溪流的富营养化,并降低地表水水质。关于径流磷与土壤磷之间的关系,现有的土壤特定数据有限。本研究调查了俄克拉荷马州三种基准土壤(里奇菲尔德土系(细质、蒙脱石质、中性干旱钙质土)、丹尼斯土系(细质、混合型、活性、热性潮湿粘化湿润淋溶土)和柯克兰土系(细质、混合型、超活性、热性潮湿变性潮湿老成土))的径流溶解态活性磷(DRP)与土壤磷之间的关系。选择这些土壤来代表俄克拉荷马州三个主要土地资源区域中最重要的农业土壤。从三个指定地点采集表层土壤(0 - 15厘米),用磷酸二铵(18 - 46 - 0)处理,以建立广泛的水溶性磷(WSP)(3.15 - 230毫克/千克)和 Mehlich - 3 磷(M3P)(27.8 - 925毫克/千克)含量范围。在模拟降雨(75毫米/小时)前210天,让改良后的土壤达到稳定状态。从裸土箱(1.0×0.42米,坡度5%)收集30分钟的径流,分析其中的DRP和总磷。在降雨模拟前立即采集的土壤样本用于分析以下指标:M3P、WSP、草酸铵磷饱和度指数(PSI(ox))、水溶性磷饱和度指数(PSI(WSP))以及根据M3P和磷吸附最大值计算的磷饱和度指数(P(sat))。对于各个土壤系列,径流中的DRP与M3P高度相关(p < 0.001)(r2 > 0.92)。对于各个土壤系列,径流DRP与土壤WSP之间也发现了高度显著的关系(p < 0.001)(r2 > 0.88)。DRP与不同的磷饱和度指数之间存在高度显著的关系(p < 0.001)。DRP - M3P、DRP - WSP、DRP - PSI(ox)、DRP - PSI(WSP)和DRP - P(sat)关系的回归斜率之间存在显著差异(p < 0.05),这表明这些关系具有土壤特异性,磷管理决策应考虑土壤特性。

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