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首页> 外文期刊>Science of the total environment >Relating Nutrient And Herbicide Fate With Landscape Features And Characteristics Of 15 Subwatersheds In The Choptank River Watershed
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Relating Nutrient And Herbicide Fate With Landscape Features And Characteristics Of 15 Subwatersheds In The Choptank River Watershed

机译:乔巴坦克河流域15个小流域的景观特征与营养盐和除草剂命运的关系。

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摘要

Excess nutrients and agrochemicals from non-point sources contribute to water quality impairment in the Chesapeake Bay watershed and their loading rates are related to land use, agricultural practices, hydrology, and pollutant fate and transport processes. In this study, monthly baseflow stream samples from 15 agricultural subwatersheds of the Choptank River in Maryland USA (2005 to 2007) were characterized for nutrients, herbicides, and herbicide transformation products. High-resolution digital maps of land use and forested wetlands were derived from remote sensing imagery. Examination of landscape metrics and water quality data, partitioned according to hydrogeomorphic class, provided insight into the fate, delivery, and transport mechanisms associated with agricultural pollutants. Mean Nitrate-N concentrations (4.9 mg/L) were correlated positively with percent agriculture (R2 = 0.56) and negatively with percent forest (R2 = 0.60). Concentrations were greater (p = 0.0001) in the well-drained upland (WDU) hydrogeomorphic region than in poorly drained upland (PDU), reflecting increased denitrification and reduced agricultural land use intensity in the PDU landscape due to the prevalence of hydric soils. Atrazine and metolachlor concentrations (mean 0.29 ug/L and 0.19|Jg/L) were also greater (p = 0.0001) in WDU subwatersheds than in PDU subwatersheds. Springtime herbicide concentrations exhibited a strong, positive correlation (R2 = 0.90) with percent forest in the WDU subwatersheds but not in the PDU subwatersheds. In addition, forested riparian stream buffers in the WDU were more prevalent than in the PDU where forested patches are typically not located near streams, suggesting an alternative delivery mechanism whereby volatilized herbicides are captured by the riparian forest canopy and subsequently washed off during rainfall. Orthophosphate, CIAT (6-chloro-N-(l-methylethyl)-l,3,5-triazine-2,4-diamine), CEAT (6-chloro-N-ethyl-l,3,5-triazine-2,4-diamine), and MESA (2-[(2-ethyl-6-methylphenyl) (2-methoxy-1 -methylethyl)amino]-2-oxoethanesulfonic acid) were also analyzed. These findings will assist efforts in targeting implementation of conservation practices to the most environmentally-critical areas within watersheds to achieve water quality improvements in a cost-effective manner.Published by Elsevier B.V.
机译:来自非点源的过多养分和农药会加剧切萨皮克湾流域的水质,其负载率与土地利用,农业实践,水文学以及污染物的归宿和运输过程有关。在这项研究中,对美国马里兰州Choptank河的15个农业子流域(2005年至2007年)的月底流样品进行了营养,除草剂和除草剂转化产品的表征。土地利用和森林湿地的高分辨率数字地图来自遥感影像。根据水文地貌分类对景观指标和水质数据进行检查,可以深入了解与农业污染物相关的结局,输送和运输机制。平均硝酸盐氮浓度(4.9 mg / L)与农业百分比(R2 = 0.56)呈正相关,与森林百分比(R2 = 0.60)呈负相关。排水良好的旱地(WDU)水文地貌区的浓度高于排水不良的旱地(PDU)的浓度(p = 0.0001),这反映了由于水土的普遍性,PDU景观中的反硝化作用增强,农业用地强度降低。与PDU子集水区相比,WDU子集水区的去津和异丙甲草胺浓度(平均0.29 ug / L和0.19 | Jg / L)也更大(p = 0.0001)。春季除草剂浓度与WDU子流域中的森林百分比呈显着正相关(R2 = 0.90),而PDU子流域中则没有。此外,WDU中的林地河岸缓冲带比PDU中更普遍,在PDU中,林地斑块通常不靠近溪流,这提示了一种替代的输送机制,挥发的除草剂被河岸林冠层捕获,随后在降雨期间被冲洗掉。正磷酸盐,CIAT(6-氯-N-(1-甲基乙基)-1,3,5-三嗪-2,4-二胺),CEAT(6-氯-N-乙基-1,3,5-三嗪-2也分析了,4-二胺)和MES​​A(2-[(2-乙基-6-甲基苯基)(2-甲氧基-1-甲基乙基)氨基] -2-氧乙烷磺酸)。这些发现将有助于努力针对流域内对环境最关键的地区实施保护措施,以经济有效的方式实现水质改善。ElsevierB.V.发布。

著录项

  • 来源
    《Science of the total environment 》 |2011年第19期| p.3866-3878| 共13页
  • 作者单位

    United States Geological Survey, Eastern Geographic Research Center, Reston, Virginia, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, Maryland, 20705, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, Maryland, 20705, USA;

    University of Maryland Center for Environmental Science, Horn Point Laboratory, Cambridge, Maryland, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, Maryland, 20705, USA et al;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Choptank River; Atrazine; Metolachlor; Tree canopy; Nitrate; Hydrogeomorph1ology;

    机译:乔普坦克河阿特拉津异丙甲草胺林冠硝酸盐水文地貌;

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