物理化学变量对伊比利亚半岛蓝藻生物量的影响

Rebeca Pérez-González, X. Sòria-Perpinyà, J. Soria, M. D. Sendra, E. Vicente
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引用次数: 0

摘要

由于人口的大量增长,对供水的需求不断增长,造成了持续不断的问题。水受到巨大的压力,其质量下降,并影响直接或间接依赖它的动植物以及人类。这些方面增加了水的处理费用或供人类消费的水体的损失。内陆水体中出现的主要问题之一是营养富集,这与富营养化甚至肥厚问题有关,这可能导致蓝藻大量繁殖,改变或破坏水生生态系统。本研究通过对伊布罗河流域伊比利亚半岛东北部内陆水体温度、停留时间、pH、总氮、无机氮、总磷、正磷酸盐、硅酸盐、藻蓝蛋白等不同理化变量的研究,建立与蓝藻生物量的关系及其对其增殖的影响。这些变量在实验室进行分析,以便随后进行变量之间的相关性和成分的多统计分析。另一方面,遥感是通过应用以前开发的算法来评估藻蓝蛋白浓度,并将其与现场测量结果进行比较。根据蓝藻生物量,温度、总氮、总磷与停留时间呈显著相关;我们也得到了负相关,例如,在硅酸盐的情况下。结果显示,在大部分水库中蓝藻的水平令人担忧,由于蓝藻毒素可能出现的危险,应该对其进行研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Physicochemical Variables on the Cyanobacteria Biovolume in Iberian Peninsula
: The growing need for water supply, because of the massive population growth, causes continuous problems. Water is subjected to great pressures, diminishing its quality and affecting the flora and fauna that depend directly or indirectly on it, as well as humans. These aspects increase the cost of its treatment or the loss of water bodies for human consumption. One of the main problems that appear in inland water bodies is nutrient enrichment, which is associated with problems of eutrophication or even hypertrophy, which can cause massive blooms of cyanobacteria, altering or destroying aquatic ecosystems. This work focuses on the study of different physicochemical variables of inland water bodies in the NE of the Iberian Peninsula in the Ebro river basin, such as temperature, residence time, pH, total nitrogen, inorganic nitrogen, total phosphorus, orthophosphates, silicates and phycocyanin, in order to establish a relationship with cyanobacterial biovolumes and how they affect their proliferation. These variables were analyzed in the laboratory in order to, subsequently, carry out a correlation between variables and a multistatistical analysis of components. On the other hand, remote sensing was used by applying a previously developed algorithm to evaluate phycocyanin concentrations and compare them with in situ measurements. This provided significant correlations between the temperature, total nitrogen, total phosphorus and residence time according to the biovolume of cyanobacteria; we also obtained a negative correlation, for example, in the case of silicates. The results showed alarming levels of cyanobacteria in a large part of the reservoirs, which should be studied due to the danger associated with the possible appearance of cyanotoxins.
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