Captions are provided by our contributors.

DETALLES DEL ARCHIVO (IMAGEN)
Fecha: 13 February 2025
Nombre del archivo: Toxic Algal Bloom Spreads Across Argentine Lakes, Endangering Ecosystem
Descripción: Entre Ríos, Argentina – February 13, 2025: Photo of Capybara affected by a severe bloom of cyanobacteria has spread across lakes and waterways in Entre Ríos, turning waters into a striking but toxic green. The phenomenon, exacerbated by high temperatures and nutrient pollution, poses a serious threat to local fauna, including fish and bird species dependent on these ecosystems. Environmental authorities have issued warnings, urging residents and tourists to avoid contact with the affected waters due to potential health risks. Scientists are closely monitoring the situation, assessing its long-term ecological impact. (Credit: Ignacio Rollano/ UNAR AGENCY)
Publicado por: UNAR PHOTO
Galería: ARGENTINA-Cyanobacteria affect the river and lakes on Entre Rios
Título: Toxic Algal Bloom Spreads Across Argentine Lakes, Endangering Ecosystem
Headline: No data
Crédito: NachoRollano
Derechos de autor: NachoRollano
Resolución: 4721 x 3147 px
Nombre del archivo: Toxic Algal Bloom Spreads Across Argentine Lakes, Endangering Ecosystem
Descripción: Entre Ríos, Argentina – February 13, 2025: Photo of Capybara affected by a severe bloom of cyanobacteria has spread across lakes and waterways in Entre Ríos, turning waters into a striking but toxic green. The phenomenon, exacerbated by high temperatures and nutrient pollution, poses a serious threat to local fauna, including fish and bird species dependent on these ecosystems. Environmental authorities have issued warnings, urging residents and tourists to avoid contact with the affected waters due to potential health risks. Scientists are closely monitoring the situation, assessing its long-term ecological impact. (Credit: Ignacio Rollano/ UNAR AGENCY)
Publicado por: UNAR PHOTO
Galería: ARGENTINA-Cyanobacteria affect the river and lakes on Entre Rios
Título: Toxic Algal Bloom Spreads Across Argentine Lakes, Endangering Ecosystem
Headline: No data
Crédito: NachoRollano
Derechos de autor: NachoRollano
Resolución: 4721 x 3147 px
Keywords: cyanobacteria bloom, toxic algal bloom, Entre Ríos environment, Argentina water pollution, harmful algae, lake contamination, wildlife threat, waterborne toxins, freshwater ecosystem crisis, climate change impact, water quality decline, eutrophication Argentina, blue-green algae, environmental disaster, fish mortality, public health warning, ecological imbalance, toxic water Argentina, algae proliferation, pollution and biodiversity, climate and water pollution, aquatic life endangerment, river contamination, lake algae outbreak, Argentine environmental crisis, waterborne disease risk, cyanotoxins in lakes, harmful blooms South America, biodiversity loss, freshwater conservation, toxic algae expansion, extreme weather effects, pollution-driven bloom, algae and tourism impact, ecosystem degradation, harmful algal effects, scientific monitoring, lake ecosystem damage, water crisis Entre Ríos, toxic waters Argentina, freshwater wildlife decline, algae and fish deaths, environmental monitoring Argentina, ecological disaster South America, river pollution alert, algal toxins public health, green lake phenomenon, harmful water bloom, local fauna impact, toxic algae warning Argentina
Buscar fotos en esta galería
VER MAS FOTOS DE LA GALERÍA
ARGENTINA-Cyanobacteria affect the river and lakes on Entre Rios
Entre Ríos, Argentina – February 13, 2025: A severe bloom of cyanobacteria has spread across lakes and waterways in Entre Ríos, turning waters into a striking but toxic green. The phenomenon, exacerbated by high temperatures and nutrient pollution, poses a serious threat to local fauna, including fish and bird species dependent on these ecosystems. Environmental authorities have issued warnings, urging residents and tourists to avoid contact with the affected waters due to potential health risks. Scientists are closely monitoring the situation, assessing its long-term ecological impact. (Credit: Ignacio Rollano/UNAR AGENCY)


















