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施用肉鸡粪便后多年生和一年生牧草养分径流的特征分析。

Characterization of nutrient runoff from perennial and annual forages following broiler litter application.

作者信息

Katuwal S, Ashworth A J, Moore P A, Owens P R

机构信息

Dep. of Poultry Science, Univ. of Arkansas, Fayetteville, AR, 72701, USA.

USDA-ARS, Poultry Production and Product Safety Research Unit, Fayetteville, AR, 72701, USA.

出版信息

J Environ Qual. 2023 Jan;52(1):88-99. doi: 10.1002/jeq2.20425. Epub 2022 Nov 22.

Abstract

Information on how forage species influence sediment and nutrient transport in runoff is required for limiting non-point source pollution from broiler litter applications. In this study, we examined the effects of five forage species (eastern gamagrass [Tripsacum dactyloides (L.) L.], Kernza [Thinopyrum intermedium (Host) Barkworth & D.R. Dewey], silphium [Silphium integrifolium Michx.], switchgrass [Panicum virgatum L.], and winter wheat [Triticum aestivum L.]) on runoff nutrient losses from broiler litter-amended (5.6 Mg ha ) and non-amended plots (control) following four simulated rainfall (5 cm h ) events that were applied to these plots in late spring and early fall of 2019 and 2021. Runoff collected for 30 min was analyzed for total suspended solids (TSS) and nutrients (total organic carbon [TOC], soluble reactive phosphorus [SRP], total dissolved phosphorus [TDP], total phosphorus [TP], total nitrogen [TN], ammonium-nitrogen [NH -N], and nitrate-nitrogen [NO -N]). Total sediment and nutrient losses increased 5- to 19-fold following litter application for all species, which reduced to background levels during fall rainfall events. Across the four simulated rainfall events, switchgrass resulted in lower cumulative losses of TSS, TOC, SRP, TDP, TP, and NO -N than gamagrass and wheat but did not differ from Kernza and silphium for litter-amended treatments. The performance of newly introduced perennial crops (Kernza and silphium) was similar or better than that of gamagrass in terms of cumulative runoff sediment and nutrient losses. Results show high potential for Kernza, silphium, and switchgrass to improve water quality when used in forage-vegetative filter strip systems.

摘要

为了限制肉鸡粪便施用造成的非点源污染,需要了解饲草物种如何影响径流中的沉积物和养分运输。在本研究中,我们考察了五种饲草物种(东部伽马草[Tripsacum dactyloides (L.) L.]、肯氏草[Thinopyrum intermedium (Host) Barkworth & D.R. Dewey]、罗盘草[Silphium integrifolium Michx.]、柳枝稷[Panicum virgatum L.]和冬小麦[Triticum aestivum L.])对2019年和2021年春末和秋初施加于这些地块的四次模拟降雨(5厘米/小时)事件后,施用肉鸡粪便(5.6 公吨/公顷)和未施用(对照)地块径流养分损失的影响。对收集30分钟的径流进行总悬浮固体(TSS)和养分(总有机碳[TOC]、可溶性活性磷[SRP]、总溶解磷[TDP]、总磷[TP]、总氮[TN]、铵态氮[NH₄-N]和硝态氮[NO₃-N])分析。所有物种在施用粪便后,总沉积物和养分损失增加了5至19倍,在秋季降雨事件期间降至背景水平。在四次模拟降雨事件中,柳枝稷导致的TSS、TOC、SRP、TDP、TP和NO₃-N的累积损失低于伽马草和小麦,但在施用粪便处理中与肯氏草和罗盘草没有差异。就累积径流沉积物和养分损失而言,新引入的多年生作物(肯氏草和罗盘草)的表现与伽马草相似或更好。结果表明,肯氏草、罗盘草和柳枝稷用于饲草-植被过滤带系统时,在改善水质方面具有很高的潜力。

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