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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Primary productivity limitations in relatively low alkalinity, high phosphorus, oligotrophic Kentucky reservoirs
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Primary productivity limitations in relatively low alkalinity, high phosphorus, oligotrophic Kentucky reservoirs

机译:初级生产率限制在相对低的碱度下,高磷,寡替氏孔孔储层

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摘要

Many Eastern Kentucky reservoirs lack algal biomass commensurate with their macronutrient concentrations. Fisheries managers sometimes suggest fertilizing these reservoirs with nitrogen (N), phosphorus (P) and carbon (C) to enhance fish production. To assess which factors could be limiting phytoplankton growth, we conducted nutrient bioassay experiments in two low alkalinity ( 17 mg CaCO3/L), high P ( 30 mu g/L), low chlorophyll ( 3 mu g/L chlorophyll a) reservoirs. We examined productivity (estimated as chlorophyll a concentrations) in situ in 4-L bags using various additions of N, P, and C. Results suggest primary productivity appears to be primarily limited by temperature, light-penetration (turbidity), and phosphorus. We observed that P was generally the limiting nutrient for algal productivity if the water was clear and temperature was 10 degrees C. We observed a secondary N limitation at high P loading. Under high loading with N + P, available carbon could become limiting in our closed system. Adding N + P in warm waters resulted in hypereutrophic algal concentrations (sometimes 100 mu g/L chlorophyll a), and could create conditions favoring nuisance algal species-neither of which would be useful for growing game fish. Adding nutrients to surface freshwaters is generally not advisable, nor a good management practice. (C) 2017 Elsevier B.V. All rights reserved.
机译:许多东肯塔基州水库缺乏与常规养殖浓度相称的藻类生物量。渔业经理有时建议用氮气(N),磷(P)和碳(C)施肥,以增强鱼类生产。为了评估哪些因素可以限制浮游植物的生长,我们在两个低碱度(& 17mg caco3 / L)中进行营养生物测定实验,高p(&30μg/ l),低叶绿素(&3μg/ l叶绿素a)水库。我们使用各种添加N,P和C原位在4-L袋中检查生产率(估计为叶绿素A浓度)。结果表明初级生产率似乎主要受温度,光穿透(浊度)和磷的限制。我们观察到,如果水清澈且温度&gt,则P是藻类生产率的限制营养素。 10℃。我们观察到高p负荷下的次级N限制。在高负载下用n + p,可用的碳可能会在我们的封闭系统中受到限制。在温水中添加N + P导致过脱发藻类浓度(有时&100μg/ l叶绿素A),并且可以产生有利的滋扰藻类物种的条件 - 这两者都不适用于生长游戏。添加营养素到地表鲜水域通常不可取,也不是良好的管理实践。 (c)2017 Elsevier B.v.保留所有权利。

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