Mona M. Abd El-Hameed, Mohamed E. Abuarab, Nadhir Al-Ansari, Shady Abdel Mottaleb, Gomaa A. Bakeer, Yeboah Gyasi-Agyei, Ali Mokhtar
{"title":"利用两种蓝藻菌株(变异毛霉菌和蘑菇发现菌)对镉(Cd)污染水体的物理修复","authors":"Mona M. Abd El-Hameed, Mohamed E. Abuarab, Nadhir Al-Ansari, Shady Abdel Mottaleb, Gomaa A. Bakeer, Yeboah Gyasi-Agyei, Ali Mokhtar","doi":"10.1186/s12302-021-00573-0","DOIUrl":null,"url":null,"abstract":"<div><h3>Background</h3><p>Water pollution with heavy metals is a severe dilemma that concerns the whole world related to its risk to natural ecosystems and human health. The main objective was to evaluate the removal efficiency of Cd of various concentrations from contaminated aqueous solution by use of two cyanobacterial strains (<i>Nostoc muscorum</i> and <i>Trichormus variabilis</i>). For this purpose, a specially designed laboratory pilot-scale experiment was conducted using these two cyanobacterial strains on four different initial concentrations of Cd (0, 0.5, 1.0 and 2.0 mg L<sup>−1</sup>) for 21 days.</p><h3>Results</h3><p><i>N. muscorum</i> was more efficient than <i>T. variabilis</i> for removing Cd (II), with the optimum value of residual Cd of 0.033 mg L<sup>−1</sup> achieved by <i>N. muscorum</i> after 21 days with initial concentration of 0.5 mg L<sup>−1</sup>, translating to removal efficiency of 93.4%, while the residual Cd (II) achieved by <i>T. variabilis</i> under the same conditions was 0.054 mg L<sup>−1</sup> (89.13% removal efficiency). Algal growth parameters and photosynthetic pigments were estimated for both cyanobacterial strains throughout the incubation period.</p><h3>Conclusions</h3><p>High Cd concentration had a more toxic impact on algal growth. The outcomes of this study will help to produce treated water that could be reused in agrarian activities.</p></div>","PeriodicalId":54293,"journal":{"name":"Environmental Sciences Europe","volume":"33 1","pages":""},"PeriodicalIF":6.0000,"publicationDate":"2021-12-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://link.springer.com/content/pdf/10.1186/s12302-021-00573-0.pdf","citationCount":"0","resultStr":"{\"title\":\"Phycoremediation of contaminated water by cadmium (Cd) using two cyanobacterial strains (Trichormus variabilis and Nostoc muscorum)\",\"authors\":\"Mona M. Abd El-Hameed, Mohamed E. Abuarab, Nadhir Al-Ansari, Shady Abdel Mottaleb, Gomaa A. 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For this purpose, a specially designed laboratory pilot-scale experiment was conducted using these two cyanobacterial strains on four different initial concentrations of Cd (0, 0.5, 1.0 and 2.0 mg L<sup>−1</sup>) for 21 days.</p><h3>Results</h3><p><i>N. muscorum</i> was more efficient than <i>T. variabilis</i> for removing Cd (II), with the optimum value of residual Cd of 0.033 mg L<sup>−1</sup> achieved by <i>N. muscorum</i> after 21 days with initial concentration of 0.5 mg L<sup>−1</sup>, translating to removal efficiency of 93.4%, while the residual Cd (II) achieved by <i>T. variabilis</i> under the same conditions was 0.054 mg L<sup>−1</sup> (89.13% removal efficiency). Algal growth parameters and photosynthetic pigments were estimated for both cyanobacterial strains throughout the incubation period.</p><h3>Conclusions</h3><p>High Cd concentration had a more toxic impact on algal growth. 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Phycoremediation of contaminated water by cadmium (Cd) using two cyanobacterial strains (Trichormus variabilis and Nostoc muscorum)
Background
Water pollution with heavy metals is a severe dilemma that concerns the whole world related to its risk to natural ecosystems and human health. The main objective was to evaluate the removal efficiency of Cd of various concentrations from contaminated aqueous solution by use of two cyanobacterial strains (Nostoc muscorum and Trichormus variabilis). For this purpose, a specially designed laboratory pilot-scale experiment was conducted using these two cyanobacterial strains on four different initial concentrations of Cd (0, 0.5, 1.0 and 2.0 mg L−1) for 21 days.
Results
N. muscorum was more efficient than T. variabilis for removing Cd (II), with the optimum value of residual Cd of 0.033 mg L−1 achieved by N. muscorum after 21 days with initial concentration of 0.5 mg L−1, translating to removal efficiency of 93.4%, while the residual Cd (II) achieved by T. variabilis under the same conditions was 0.054 mg L−1 (89.13% removal efficiency). Algal growth parameters and photosynthetic pigments were estimated for both cyanobacterial strains throughout the incubation period.
Conclusions
High Cd concentration had a more toxic impact on algal growth. The outcomes of this study will help to produce treated water that could be reused in agrarian activities.
期刊介绍:
ESEU is an international journal, focusing primarily on Europe, with a broad scope covering all aspects of environmental sciences, including the main topic regulation.
ESEU will discuss the entanglement between environmental sciences and regulation because, in recent years, there have been misunderstandings and even disagreement between stakeholders in these two areas. ESEU will help to improve the comprehension of issues between environmental sciences and regulation.
ESEU will be an outlet from the German-speaking (DACH) countries to Europe and an inlet from Europe to the DACH countries regarding environmental sciences and regulation.
Moreover, ESEU will facilitate the exchange of ideas and interaction between Europe and the DACH countries regarding environmental regulatory issues.
Although Europe is at the center of ESEU, the journal will not exclude the rest of the world, because regulatory issues pertaining to environmental sciences can be fully seen only from a global perspective.