{"refrec":{"BRefID":322129,"RR":"<b>Bautista- Chamizo, E.; De Orte, M.R.; DelValls, T.A.; Riba, I.</b> (2016). Simulating CO<sub>2</sub> leakages from CCS to determine Zn toxicity using the marine microalgae <i>Pleurochrysis roscoffensis</i>. <i>Chemosphere 144</i>: 955-965. <a href=\"https://dx.doi.org/10.1016/j.chemosphere.2015.09.041\" target=\"_blank\">https://dx.doi.org/10.1016/j.chemosphere.2015.09.041</a>","BEntID":315594,"PublicFlag":1,"CheckedFlag":0,"wosflag":1,"vabbflag":1,"RefStringPartII":". <i>Chemosphere 144</i>: 955-965. <a href=\"https://dx.doi.org/10.1016/j.chemosphere.2015.09.041\" target=\"_blank\">https://dx.doi.org/10.1016/j.chemosphere.2015.09.041</a>","DocTypID":8,"DocType":"Journal article","MarineFlag":0,"FreshFlag":0,"BrackishFlag":0,"TerrestrialFlag":0,"Authorstring":"Bautista- Chamizo, E.; De Orte, M.R.; DelValls, T.A.; Riba, I.","OrigTitleTranslFlag":0,"Authorstringtrunc":"Bautista- Chamizo, E. <i>et al.</i>","Englishabstract":"Due to the current climate change and ocean acidification, a new technology for CO<SUB>2</SUB> mitigation has been proposed, the Carbon dioxide Capture and Storage (CCS). However, there is an ecological risk associated with potential CO<SUB>2</SUB> leakages from the sub-seabed storages sites. To evaluate the effects related to CO<SUB>2</SUB> leakages, laboratory-scales experiments were performed using the marine microalgae <i<Pleurochrysis roscoffensis</i>. Five Zn concentrations were tested at different pHs to study Zn toxicity under acidified conditions. Seawater was collected and submitted to acidification by means of CO<SUB>2</SUB> injection and by HCl addition. Results showed differences between both acidification techniques: while microalgae growth was enhanced by CO<SUB>2</SUB> supply, reaching the optimal growth at pH 6.5 and full inhibition at pH 5.5, HCl acidification growth was inhibited at pH 6.5. Although small concentrations of Zn were positive for P. roscoffensis growth, Zn toxicity increased at lower pHs, and more severely on samples acidified with HCl. The conclusions obtained in this work are useful to address the potential effects on the marine ecosystem related to changes in metal bioavailability during CO<SUB>2</SUB> leakages scenarios.","AbstractOtherLang":null,"BibLvlCode":"AS","StandardTitle":"Simulating CO<sub>2</sub> leakages from CCS to determine Zn toxicity using the marine microalgae <i>Pleurochrysis roscoffensis</i>","OrigTitleLangCode":"en","OrigTitleLangCodeExtended":"eng","OrigTitleLangID":15,"DateLastModified":{"date":"2024-12-10 01:33:17.368041","timezone_type":1,"timezone":"+01:00"},"UserAccessRight":null,"UserAccID":null,"AuthorKeywords":"Carbon dioxide Capture and Storage (CCS); Ocean acidification; ","OtherDescriptors":null,"Notes":null,"AnaPub":2016,"MonPub":null,"DateUpdate":"2020-03-12","DateCreate":"2020-03-12","SecASFANote":null,"ConfID":null,"PeerRev":1,"VlizCoreFlag":1,"WoScode":"WOS:000367774400121","VABBcode":null,"OpenAcc":0,"DOI":"10.1016/j.chemosphere.2015.09.041"},"refs":null,"anarec":{"AnaID":322129,"PubliDate":2016,"Pagination":"955-965","XtraPublOfAnaID":null,"ISBN":null,"Volume":"144","Issue":null,"BRefMon":null,"BRefMonRR":null,"BRefXtra":null,"BRefXtraRR":null,"SerBRefID":42564,"SerRR":"Chemosphere. 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