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Multiple Effects of Environmental Factors on Algal Growth and Nutrient Thresholds for Harmful Algal Blooms: Application of Response Surface Methodology

机译:环境因素对有害藻华的藻生长和营养阈值的多重影响:响应面法的应用

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Systematic understanding of the co-effects of environmental factors on phytoplankton proliferation can enable more effective control of harmful algal blooms in eutrophic lakes and reservoirs. A batch of statistically designed experiments using response surface methodology was recently conducted on mixed algae samples collected from Changtan Reservoir. The central composite designed response surface model was established to evaluate multiple effects of various physical and chemical factors (total nitrogen, total phosphorus, temperature, and light intensity) on algal density and chlorophyll a content. Analysis of variance indicated an excellent correlation between modeling results and experimental responses. Among the selected environmental variables, promotion of the interactive effects of nitrogen and phosphorus together with the optimum total nitrogen/phosphorus mass ratio (between 7.9 and 10.1) was determined to be the most significant stimulating parameter associated with algal blooming development dominated by non-nitrogen-fixing species. The favorable effects of strong illumination were shown to be greater than those of high temperature. The border values of total nitrogen and phosphorus concentrations leading to a critical value of algal density under different water temperatures and light intensities could be predicted as nutrient loading thresholds for harmful algal blooms by our second-order polynomial regression model.
机译:对环境因素对浮游植物增殖的共同影响的系统性了解可以使对富营养化湖泊和水库中有害藻华的控制更为有效。最近,对从长潭水库收集的混合藻类样品进行了使用响应面方法进行的一系列统计设计实验。建立了中央复合设计响应表面模型,以评估各种物理和化学因素(总氮,总磷,温度和光强度)对藻类密度和叶绿素a含量的多重影响。方差分析表明,建模结果与实验响应之间具有极好的相关性。在选定的环境变量中,确定氮和磷相互作用的促进以及最佳总氮/磷质量比(介于7.9和10.1之间)是与非氮为主的藻类开花发育相关的最重要的刺激参数。固定种。结果表明,强光照的有利影响要大于高温。通过我们的二阶多项式回归模型,可以预测在不同水温和光照强度下导致藻类密度达到临界值的总氮和磷浓度的边界值,作为有害藻华的营养物装载阈值。

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