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Effects of Hydroclimatic Drivers and Tillage Practices on Runoff Generation and Phosphorus Losses Through Drainage Tiles from Agricultural Fields with Sandy Loam Soils

机译:水分气候驱动因素和耕作方式对含沙壤土农业田排水砖产生径流和磷流失的影响

摘要

Effluent from agricultural tile drains has been identified a source of phosphorus (P) to water bodies, contributing to algal blooms and water quality degradation. Reduced till (RT) or no-till are Best Management Practices (BMP) often used to limit the export of particulate P (PP) in runoff. However, existing research has shown that no-till may increase losses of dissolved reactive phosphorus (DRP) in tile drains. Much of the existing knowledge has been generated in clay soil, where preferential transport between the surface and tile drains prevails. Moreover, much of the previous work done has been done during the growing season. It is unclear if, and how P losses under RT tillage practices compare to those under annual tillage (AT) in the sandy loam soils of southern Ontario, and, how these BMPs perform year-round in climates where snowmelt accounts for significant amount of annual runoff. The objectives of this research are to quantify year-round losses of runoff, DRP and total phosphorus (TP) from tile drains beneath RT and AT plots and to demonstrate the role of seasonality on losses. This research also relates biogeochemical and hydrological responses in drainage tiles to precipitation inputs and antecedent soil moisture conditions as drivers of effluent and P-export. Tile runoff and chemistry were monitored for a 28-month period at two adjacent sites under similar management practices. Both runoff and P-export were episodic across all plots, with the majority of annual losses occurring during a few key events under heavy precipitation or snowmelt. Most losses occurred during the non-growing season between October and May. Tillage methods did not affect DRP or TP concentrations or loads in tile drain effluent. Tile discharge and responses were governed by soil moisture conditions such that flow only occurred at soil moisture conditions that fell above a threshold value (above field capacity, near saturation). Runoff responses during the non-growing season were high because soils sit at or close to this threshold consistently. Strong relationships were found between volume of discharge and DRP and TP loads, indicating that with known baseline conditions, simple hydrometric data may be able to predict biogeochemical and hydrologic responses in drainage tiles under sandy loam soils.This study emphasizes the importance of the non-growing season and snowmelt in annual P losses from tile drains, illustrating that BMPs must be effective during the winter months to reduce P losses. The cumulative BMPs used at the study site appear to be fairly effective at minimizing P losses in tile drain effluent under both RT and AT plots. This study also provides useful insight for modeling runoff and P losses in tile drainage.
机译:人们已经确定了从农业瓷砖排水沟流出的水是水体中磷的来源,这助长了藻华和水质下降。减少耕作(RT)或免耕是最佳管理实践(BMP),通常用于限制径流中颗粒物P(PP)的出口。但是,现有研究表明,免耕可能会增加瓷砖排水沟中溶解的反应性磷(DRP)的损失。现有的许多知识是在黏土中产生的,在黏土中,地表排水和地砖排水之间的优先运输占优势。此外,以前所做的许多工作都是在生长季节完成的。目前尚不清楚在安大略省南部的砂壤土上,RT耕作方式下的P损失量是否与年耕(AT)下的损失量相比如何,以及这些BMP在融雪占大量年土壤量的气候下全年表现如何径流。这项研究的目的是量化RT和AT地块下方瓷砖排水口全年径流,DRP和总磷(TP)的损失,并证明季节性因素对损失的作用。这项研究还将排水瓦中的生物地球化学和水文响应与降水输入和前期土壤湿度条件作为污水和磷出口的驱动因素联系起来。在两个相邻地点,按照相似的管理措施,对瓷砖的径流和化学物质进行了28个月的监测。径流和磷出口在所有土地上都是偶发性的,大部分年度损失发生在大雨或融雪的一些关键事件中。大部分损失发生在10月至5月之间的非生长季节。耕作方法不会影响DRP或TP的浓度或瓷砖排水中的负荷。瓷砖的排水和响应受土壤湿度条件的控制,因此只有在土壤湿度条件下(阈值以上,接近饱和)时才发生流动。在非生长季节,径流响应很高,因为土壤始终处于或接近该阈值。发现排水量与DRP和TP负荷之间存在很强的关系,这表明在已知基线条件下,简单的水文数据可能能够预测砂壤土下排水砖的生物地球化学和水文响应。生长季节和瓷砖排水沟每年磷损失的融雪,说明BMP必须在冬季有效以减少磷损失。在RT和AT图下,研究现场使用的累积BMP似乎在最小化瓷砖排水中的P损失方面相当有效。这项研究还为瓷砖排水中的径流和磷损失建模提供了有用的见识。

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    Lam Wai-To Vito Vital;

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  • 年度 2015
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  • 正文语种 en
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