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Water quality monitoring of an agricultural watershed lake: the effectiveness of agricultural best management practices

机译:农业流域湖泊水质监测:农业最佳管理实践的有效性

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Beasley Lake is an oxbow lake located in the Lower Mississippi Alluvial Plain (the Delta), a region of extensive agricultural activity. Due to intensive row-crop agricultural practices, the 915ha watershed was sediment impaired when monitoring began in 1995 and was a candidate to assess the effectiveness of watershed-wide agricultural Best Management Practices (BMPs) on lake Water Quality (WQ). BMPs within crop fields, at field edges throughout the watershed, and enrolment of 113ha into Conservation Reserve Program (CRP) were implemented from 1997-2003 targeting reductions in sediment runoff. Bi-weekly WQ data from 1996-2009 were analyzed. WQ parameters assessed include Total Dissolved Solids (TDS), Total Suspended Solids (TSS), Filterable Orthophosphate (FOP), Total Orthophosphate (TOP), Total Nitrate Nitrogen (NO3), Total Ammonia Nitrogen (NH3), chlorophyll a, and water clarity (secchi visibility depth). Over the 14-year period, TSS, TOP, NO3, and NH3 decreased annually whereas chlorophyll a and water clarity increased in conjunction with implemented BMPs. FOP appeared unaffected throughout the monitoring period. While annual improvement in WQ occurred, distinct seasonal effects were noticeable. Changes in TSS, TOP, NO3, NH3, and water clarity were greatest during spring and negligible in winter. Changes in TDS were observed only during summer. Reductions in spring TSS directly reduced TOP, increased chlorophyll a and water clarity. Results of this study indicate clear improvement in Mississippi Delta lake WQ with watershed-wide implementation of agricultural BMPs and these improvements, manifested most strongly during spring, will promote a healthy, sustainable lake ecosystem.
机译:比斯利湖(Beasley Lake)是位于下密西西比河冲积平原(三角洲)的牛弓湖,该地区农业活动广泛。由于集约耕作农业的严格实践,在1995年开始监测时,915公顷流域的泥沙淤积受到了损害,是评估整个流域农业最佳管理实践(BMP)对湖泊水质(WQ)有效性的候选者。从1997年至2003年,实施了作物流域内,整个流域边缘的BMP,并将113公顷的土地纳入保护储备计划(CRP),以减少沉积物径流。分析了1996-2009年的双周WQ数据。评估的WQ参数包括总溶解固体(TDS),总悬浮固体(TSS),可过滤正磷酸盐(FOP),总正磷酸盐(TOP),总硝酸盐氮(NO3),总氨氮(NH3),叶绿素a和水的透明度(secchi可见深度)。在这14年中,TSP,TOP,NO3和NH3每年减少,而叶绿素a和水的净度与已实施的BMP一起增加。在整个监测期内,FOP似乎都没有受到影响。虽然WQ每年都有改善,但明显的季节性影响却很明显。在春季,TSS,TOP,NO3,NH3和水的透明度变化最大,而在冬季则可以忽略不计。仅在夏季观察到TDS的变化。春季TSS的减少直接降低了TOP,增加了叶绿素a和水的透明度。这项研究的结果表明,在密西西比河三角洲WQ范围内,随着农业BMP的全面实施,水质有了明显改善,而这些改善在春季表现得最为明显,将促进健康,可持续的湖泊生态系统。

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