2014
DOI: 10.3184/095422914x14039722451529
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Biosorption of copper (II) onSargassum angostifoliumC.Agardh phaeophyceae biomass

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Cited by 19 publications
(5 citation statements)
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“…Dead algal mass is reported to be more promising than living algae because it has a high metal ion sorption capacity at a high rate, and the adsorbed heavy metal ions present can easily be removed using de-ionized water or desorption agents [106]. There are several works on the use of many species of sargasso as biosorbents, and in the removal of pollutants, such as metal ions (e.g., Hg, Pb, Cu, Cd, Ni, Zn, Fe, and Cr), organic solvents, and organic dyes [107][108][109][110][111][112][113][114][115].…”
Section: Biosorption Potential Of Sargasso Biomassmentioning
confidence: 99%
“…Dead algal mass is reported to be more promising than living algae because it has a high metal ion sorption capacity at a high rate, and the adsorbed heavy metal ions present can easily be removed using de-ionized water or desorption agents [106]. There are several works on the use of many species of sargasso as biosorbents, and in the removal of pollutants, such as metal ions (e.g., Hg, Pb, Cu, Cd, Ni, Zn, Fe, and Cr), organic solvents, and organic dyes [107][108][109][110][111][112][113][114][115].…”
Section: Biosorption Potential Of Sargasso Biomassmentioning
confidence: 99%
“…The systematic utilization of RSM for the adsorptive removal of malachite green, methylene blue, azo and anthraquinone dyes from effluents has been reported (Song et al 2018;Chowdhury et al 2019;Ahmad et al 2020). In addition, adsorptive removal of acid dye using derived activated carbon for antibiotic (ciprofloxacin) removal from wastewater using rice husk as well as other research findings on the employment of RSM for the adsorptive removal of organic contaminants from aqueous system has established the effective application of RSM as an efficient computational model in wastewater treatment (Amini et al 2008;Niad et al 2014;Samuel et al 2015;Zhou et al 2019).…”
Section: Response Surface Methodologymentioning
confidence: 99%
“…). The capacity to absorb this toxic metal has been previously described for Sargassum angustifolium (Niad, Rasoolzadeh, & Zarei, 2014) and Sargassum fusiforme (Huang & Lin, 2015). observed for copper, the ability of Sargassum to capture and accumulate Cu must be taken into account to ensure the safety of algal materials in certain applications.…”
Section: Caleta (Sample Lcn1mentioning
confidence: 98%