Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution

Detalhes bibliográficos
Autor(a) principal: Oliver,Sofia Lizarralde
Data de Publicação: 2020
Outros Autores: Ikefuti,Priscilla Venâncio, Ribeiro,Helena
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Revista Ambiente & Água
Texto Completo: http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1980-993X2020000400310
Resumo: Abstract Urbanization in river basins contributes to the anthropogenic eutrophication of their water bodies, leading to the proliferation of toxic algae such as cyanobacteria. There is a characteristic pattern of seasonality in algal blooms and cyanobacterial communities, although these algae may be present or even dominant for most of the year, causing practical problems associated with high cyanobacterial biomass and potential health threats. The increased concentration of toxins originating from these algae, cyanotoxins, in water-supply reservoirs puts the population at serious risk, since they are not removed by conventional treatment and filtration. This study analyzed possible associations between climate elements and cyanobacteria biomass in the Guarapiranga dam reservoir, located in the metropolitan region of São Paulo, Brazil. Meteorological variables were studied exclusively in relation to the cyanobacteria biomass, in order to perceive the influence of weather and climate in this complex system and to provide data for modeling future climate change scenarios. For this purpose, cyanobacteria count data were used for the period from 2010 to 2016, grouped by month, in addition to the atmospheric variables. The strongest correlation with the blooms was with Irradiation and Total Rainfall, explaining 30% of cases of the occurrence of cyanobacteria proliferation at the point of collection GU 101. Despite the notable influence of climatic seasonality on the algae blooms, this difference varies and is not homogeneous, depending on the location and the species studied.
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spelling Cyanobacteria bloom variations and atmospheric variables, an environmental health contributionclimate changecyanobacteriaenvironmental healthAbstract Urbanization in river basins contributes to the anthropogenic eutrophication of their water bodies, leading to the proliferation of toxic algae such as cyanobacteria. There is a characteristic pattern of seasonality in algal blooms and cyanobacterial communities, although these algae may be present or even dominant for most of the year, causing practical problems associated with high cyanobacterial biomass and potential health threats. The increased concentration of toxins originating from these algae, cyanotoxins, in water-supply reservoirs puts the population at serious risk, since they are not removed by conventional treatment and filtration. This study analyzed possible associations between climate elements and cyanobacteria biomass in the Guarapiranga dam reservoir, located in the metropolitan region of São Paulo, Brazil. Meteorological variables were studied exclusively in relation to the cyanobacteria biomass, in order to perceive the influence of weather and climate in this complex system and to provide data for modeling future climate change scenarios. For this purpose, cyanobacteria count data were used for the period from 2010 to 2016, grouped by month, in addition to the atmospheric variables. The strongest correlation with the blooms was with Irradiation and Total Rainfall, explaining 30% of cases of the occurrence of cyanobacteria proliferation at the point of collection GU 101. Despite the notable influence of climatic seasonality on the algae blooms, this difference varies and is not homogeneous, depending on the location and the species studied.Instituto de Pesquisas Ambientais em Bacias Hidrográficas2020-01-01info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersiontext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1980-993X2020000400310Revista Ambiente & Água v.15 n.4 2020reponame:Revista Ambiente & Águainstname:Instituto de Pesquisas Ambientais em Bacias Hidrográficas (IPABHI)instacron:IPABHI10.4136/ambi-agua.2523info:eu-repo/semantics/openAccessOliver,Sofia LizarraldeIkefuti,Priscilla VenâncioRibeiro,Helenaeng2020-07-23T00:00:00Zoai:scielo:S1980-993X2020000400310Revistahttp://www.ambi-agua.net/PUBhttps://old.scielo.br/oai/scielo-oai.php||ambi.agua@gmail.com1980-993X1980-993Xopendoar:2020-07-23T00:00Revista Ambiente & Água - Instituto de Pesquisas Ambientais em Bacias Hidrográficas (IPABHI)false
dc.title.none.fl_str_mv Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
title Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
spellingShingle Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
Oliver,Sofia Lizarralde
climate change
cyanobacteria
environmental health
title_short Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
title_full Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
title_fullStr Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
title_full_unstemmed Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
title_sort Cyanobacteria bloom variations and atmospheric variables, an environmental health contribution
author Oliver,Sofia Lizarralde
author_facet Oliver,Sofia Lizarralde
Ikefuti,Priscilla Venâncio
Ribeiro,Helena
author_role author
author2 Ikefuti,Priscilla Venâncio
Ribeiro,Helena
author2_role author
author
dc.contributor.author.fl_str_mv Oliver,Sofia Lizarralde
Ikefuti,Priscilla Venâncio
Ribeiro,Helena
dc.subject.por.fl_str_mv climate change
cyanobacteria
environmental health
topic climate change
cyanobacteria
environmental health
description Abstract Urbanization in river basins contributes to the anthropogenic eutrophication of their water bodies, leading to the proliferation of toxic algae such as cyanobacteria. There is a characteristic pattern of seasonality in algal blooms and cyanobacterial communities, although these algae may be present or even dominant for most of the year, causing practical problems associated with high cyanobacterial biomass and potential health threats. The increased concentration of toxins originating from these algae, cyanotoxins, in water-supply reservoirs puts the population at serious risk, since they are not removed by conventional treatment and filtration. This study analyzed possible associations between climate elements and cyanobacteria biomass in the Guarapiranga dam reservoir, located in the metropolitan region of São Paulo, Brazil. Meteorological variables were studied exclusively in relation to the cyanobacteria biomass, in order to perceive the influence of weather and climate in this complex system and to provide data for modeling future climate change scenarios. For this purpose, cyanobacteria count data were used for the period from 2010 to 2016, grouped by month, in addition to the atmospheric variables. The strongest correlation with the blooms was with Irradiation and Total Rainfall, explaining 30% of cases of the occurrence of cyanobacteria proliferation at the point of collection GU 101. Despite the notable influence of climatic seasonality on the algae blooms, this difference varies and is not homogeneous, depending on the location and the species studied.
publishDate 2020
dc.date.none.fl_str_mv 2020-01-01
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dc.language.iso.fl_str_mv eng
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dc.relation.none.fl_str_mv 10.4136/ambi-agua.2523
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dc.publisher.none.fl_str_mv Instituto de Pesquisas Ambientais em Bacias Hidrográficas
publisher.none.fl_str_mv Instituto de Pesquisas Ambientais em Bacias Hidrográficas
dc.source.none.fl_str_mv Revista Ambiente & Água v.15 n.4 2020
reponame:Revista Ambiente & Água
instname:Instituto de Pesquisas Ambientais em Bacias Hidrográficas (IPABHI)
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