2016
DOI: 10.1007/s13762-016-1198-6
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Application of nanoadsorbents for removal of lead from water

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Cited by 44 publications
(16 citation statements)
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References 128 publications
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“…Švino koncentracija gali būti mažinama naudojant nanofiltravimą, membraninį filtravimą (Gholami, A., Moghadassi, Hosseini, Shabani ir Gholami, F., 2014). Dažnai švino šalinimui naudojama adsorbcija (Bhatia et al, 2016). Adsorbcija -ištirpusių arba dujinių medžiagų sugėrimas kieto arba skysto kūno paviršiumi.…”
Section: įVadasunclassified
“…Švino koncentracija gali būti mažinama naudojant nanofiltravimą, membraninį filtravimą (Gholami, A., Moghadassi, Hosseini, Shabani ir Gholami, F., 2014). Dažnai švino šalinimui naudojama adsorbcija (Bhatia et al, 2016). Adsorbcija -ištirpusių arba dujinių medžiagų sugėrimas kieto arba skysto kūno paviršiumi.…”
Section: įVadasunclassified
“…On the other hand, adsorption technology has several challenges, such as selective recovery and reuse of valuable adsorbents and pollutants in the presence of humic substances [50,51]. Adsorbents developed with favorable structures, morphologies, superior adsorption capacities, and ease of separation are a major focus of the current research [26,[52][53][54][55][56][57][58][59][60]. Recently, the development of nanotechnology has attracted considerable attention due to the remarkable potential of the nanoadsorbents for the selective and effective removal of ionic pollutants from aqueous solution when compared with the traditional adsorbents [13,33,[61][62][63][64][65][66].…”
Section: Introductionmentioning
confidence: 99%
“…Las tecnologías de biorremediación, que son procesos naturales ambientalmente seguros, se han convertido en alternativas atractivas para los métodos convencionales. ellas, la biosorción y la bioacumulación abordan diversas interacciones y concentraciones de metales tóxicos en biomasa viva (bioacumulación) o no viva (bioadsorción) a partir de microorganismos (Bhatia et al 2016).…”
Section: Introductionunclassified