2004
DOI: 10.1016/j.envint.2003.08.001
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Metal bioremediation through growing cells

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Cited by 969 publications
(486 citation statements)
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References 99 publications
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“…Although the efforts directed towards the biosynthesis of nanomaterials are recent, the interactions between micro-organisms and metals have been well documented (11)(12)(13)(14) and the ability of micro-organisms to extract and/or accumulate metals is employed in commercial biotechnological processes such as bioleaching and bioremediation.…”
Section: Introductionmentioning
confidence: 99%
“…Although the efforts directed towards the biosynthesis of nanomaterials are recent, the interactions between micro-organisms and metals have been well documented (11)(12)(13)(14) and the ability of micro-organisms to extract and/or accumulate metals is employed in commercial biotechnological processes such as bioleaching and bioremediation.…”
Section: Introductionmentioning
confidence: 99%
“…Эффективность биосорбции металлов клетками МВ напрямую зависит от общей площади клеточной поверхности, поэтому иммобилизация культур на поверхности различных носителей, позволяющая сконцентрировать их в небольшом объеме, в большинстве случаев приводит к значи-тельному увеличению биоизъятия ТМ [58]. В на-стоящее время для биоизъятия ТМ используют в основном культуры МВ, иммобилизованные на природных носителях (каррагинан, альгинаты, хи-тозан, агароза) и химических полимерах (полиакрил-амид, полипропилен, полисульфон, различные сополимеры).…”
Section: биоизъятие тяжелых металловunclassified
“…Metais pesados e alguns semimetais são elementos químicos que possuem densidade superior a 5 g.cm -3 (TOES et al, 2004;MALIK, 2004). Geralmente são tóxicos aos organismos vivos, mesmo em baixas concentrações, como por exemplo, 0,01 mg(Pb).L -1 , 0,05 mg(Cr).L -1 em águas doces (CONAMA, 357), sendo considerados poluentes.…”
Section: Introductionunclassified