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Nutrient Budget for Lakes Rotoiti and Rotorua. Part I: Internal Nutrient Loads

机译:罗托伊蒂湖和罗托鲁瓦湖的营养预算。第一部分:内部营养负荷

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摘要

Time series data of temperature and concentrations of dissolved oxygen and nutrients (total nitrogen – TN, total phosphorus – TP, nitrate – NO³, ammonium – NH₄ and filterable reactive phosphorus - FRP) were examined for trends in Lake Rotoiti for 1981-82 and 1990-2003 and in Lake Rotorua for 2002-03. TP, NO₃, NH₄ in bottom waters (40-60m) of Lake Rotoiti, below the thermocline, were examined using regression equations to quantify seasonal transformations of TP, NO₃ and NH₄. There is a relatively linear build-up of phosphorus through time in the hypolimnion following the onset of stratification and initiation of deoxygenation until the time of winter mixing. When there were high frequency nutrient data for Lake Rotoiti (1981-82 at 60 m, 1991-94 at 60 m and 2001-02 at 40 m depth) the rate of seasonal phosphorus build-up could be quantified by regression to within a relatively narrow range of 111 mg TP m⁻³ yr⁻¹ (0.304 mg TP m⁻³ day⁻¹ ) in 1992-93 to 136 mg TP m⁻³ yr⁻¹(0.373 mg TP m⁻³ day⁻¹ )in 1981-82. Based on the first and last points of all the regression equations developed for TP increase, approximately 14.4 (1993-94) to 20.5 tonnes (2001-02) of phosphorus may be added to the hypolimnion of Lake Rotoiti during stratification. There is no evidence of a consistant interannual change in the seasonal build-up of phosphorus over the years considered and the reasons for interannual variations in the rates are not immediately apparent.
机译:研究了1981-82年和1990年罗托蒂湖的温度和溶解氧和养分浓度(总氮-总氮,总磷-总磷,硝酸盐-NO³,铵-NH 3和可过滤活性磷-FRP)的时间序列数据。 -2003年和2002-03年在罗托鲁瓦湖中。用回归方程对罗托伊提湖底水(40-60m)中TP,NO 3和NH 3的含量进行回归分析,以量化TP,NO 3和NH 4的季节性变化。分层开始和脱氧开始直到冬季混合之前,在下层水系中磷随时间的积累相对线性。如果有Rotoiti湖的高频养分数据(60 m处的1981-82年,60 m处的1991-94年和40 m处的2001-02年),则可以通过回归在相对较低的范围内量化季节性磷积累的速率。在1992-93年间将111 mg TPm³yr⁻¹(0.304 mg TPm³³天⁻¹)的范围缩小到1981年的136 mg TPm³yr¹((0.373 mg TPm³³天⁻¹) -82。根据为提高TP而开发的所有回归方程的第一个和最后一个点,在分层过程中,大约有14.4(1993-94)至20.5吨(2001-02)的磷可添加到Rotoiti湖的次生水中。没有证据表明在所考虑的年份中磷的季节性积累存在稳定的年际变化,并且速率的年际变化的原因尚不明确。

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