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Biosorption column performance with a metal mixture
DOI:10.1021/es001027l.png)
摘要
En 中文
The biosorption of Cu, Cd, and Zn from multicomponent mixtures was studied in equilibrium systems and in a flow-through column packed with potassium-saturated Sargassum algal biosorbent. Pretreatment of the biomass with calcium-, sodium-, magnesium-, and potassium-hydroxides was examined. KOH washing resulted in a stable biosorbent with an improved affinity for Zinc. Two-metal sorption resulted in Zn breaking through the column faster than Cd due to its low affinity. The sharp favorable Zn breakthrough curve can be explained by its affinity toward the biomass which is higher than that of K. An overshoot of the Zn exit concentration was observed and explained by the ion exchange between Cd and Zn, whereby the higher-affinity Cd from the solution displaces Zn already bound to the biosorbent. The same effect was observed for Zn, and to a lesser extent Cd, in three-metal sorption (Zn, Cd, Cu). The Cd exit concentration also exceeded its feed level as Cu displaced it on the binding sites of the biomass in the bed. The time interval between Zn and Cd breakthroughs was much shorter than that between the breakthrough points of Cd and Cu. This is because the relative affinities of Zn and Cd, determined from batch equilibrium experiments, are much closer to each other (Zn/K = 1.96 and Cd/K = 3.71) than to Cu (Cu/K = 16.51). The application of experimental IMPACT computer software examined was only partially successful in exactly simulating the biosorption column performance.
Keyword:
SARGASSUM FLUITANS
IONIC-STRENGTH
PROTONS
BIOMASS
PH
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期刊
E
IF:
11.3
论文数:
4.3W
被引数:
26.0W
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