监测蓝细菌和藻蓝蛋白:以瓦伦西亚Albufera为例

Paula Soms, Rebeca Pérez-González, X. Sòria-Perpinyà, J. Soria, E. Vicente
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摘要

一些蓝藻被认为对人类有益,而另一些则被认为是有害的,因为它们有能力合成和释放蓝藻毒素。蓝藻华是由于氮、磷等营养物质的高浓度,以及太阳辐射、温度等其他物化参数的干预,蓝藻的增殖,使水体的营养状态恶化。蓝藻华可以产生蓝藻毒素,直接降低人类使用的水质。自20世纪80年代以来,城市和农业的集约化,加上气候变化的影响,造成了瓦伦西亚阿尔布费拉目前营养不良的状态。它是位于伊比利亚半岛东部的一个沿海泻湖,需要持续监测以监测其生态质量。本研究的目的是监测2022年冬春季节藻蓝蛋白浓度及其与蓝藻密度的关系。为此,测量了理化变量,确定了浮游植物群落;最后,利用Sentinel-2遥感图像就地测量了藻蓝蛋白的存在。根据塞奇圆盘,泻湖呈现出一种永久浑浊的状态,平均透明度为30厘米。结果表明,从冬季到夏季,藻蓝蛋白浓度升高与磷浓度升高有关,藻蓝蛋白达到561.3µg/L,总磷达到8.7 mg P/L。根据《水框架指令》的营养状态参考值,总磷浓度过高,表明营养过剩。据世界卫生组织称,发现的藻蓝蛋白浓度表明处于高度警戒状态。遥感是监测和跟踪泻湖状况的适当工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring Cyanobacteria and Phycocyanin: A Case Study in the Albufera of Valencia
: Some cyanobacteria are considered beneficial to humans, while others are considered harmful due to their ability to synthesize and release cyanotoxins. Cyanobacterial blooms are proliferations of cyanobacteria due to the high concentration of nutrients such as nitrogen and phosphorus, as well as the intervention of other physicochemical parameters such as solar radiation and temperature, worsening the trophic state of the water body. Cyanobacterial bloom can produce cyanotoxins, which directly decrease water quality for human use. Since the 1980s, urban and agricultural intensification, together with the effects of climate change, produced the current poor trophic state of the Albufera of Valencia. It is a coastal lagoon located in the east of the Iberian Peninsula, which requires continuous monitoring in order to monitor its ecological quality. The objective of this study is to monitor the concentration of phycocyanin and its relationship with the density of cyanobacteria during the winter–spring of 2022. For this, physicochemical variables were measured, and phytoplankton communities were determined; finally, the presence of phycocyanin was measured in situ and by remote sensing using Sentinel-2 imagery. The lagoon presents a state of permanent turbidity with an average transparency of 30 cm according to the Secchi Disk. The results obtained show an increasing concentration of phycocyanin from winter to summer related to higher phosphorus concentrations, reaching values of 561.3 µ g/L for phycocyanin and 8.7 mg P/L of total phosphorus. According to the trophic state reference values of the Water Framework Directive, the concentration of total phosphorus is excessive, indicating a hypertrophic state. According to the World Health Organization, the concentration of phycocyanin found would indicate a state of high alert. Remote sensing serves as a suitable tool for monitoring and tracking the status of the lagoon.
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