Guzman J, Saucedo I, Revilla J, Navarro R, Guibal E
Instituto de Investigaciones Científicas, Universidad de Guanajuato, Cerro de la Venada, s/n, Pueblito de Rocha, Guanajuato Gto. C.P. 36040, Mexico.
Int J Biol Macromol. 2003 Nov;33(1-3):57-65. doi: 10.1016/s0141-8130(03)00067-9.
The presence of organic ligands in a solution containing metal ions modifies metal speciation, which in turn changes the sorption mechanism, optimum pH range and maximum sorption capacity. The present work investigates the sorption of copper by chitosan in the presence of citrate at different metal/ligand ratios. Copper uptake in acidic solution takes place through electrostatic attraction between the protonated amine groups of chitosan and anionic copper-citrate complexes (mainly Cu(OH)L2- but also a small fraction of CuL-). Sorption was negligible below pH 3 due to competition from dissociated anionic ligand and counter ions brought about by dissociation of the acid used for pH control. Actually, copper sorption begins to be significant when the fraction of anionic copper-complexes exceeds that of anionic copper-free ligand. So sorption capacity strongly increases up to pH 4.5-5.5. Above pH 5.5, the progressive decrease of amine protonation leads to a linear decrease in sorption capacity. An excess of ligand leads to an increase in the fraction of free dissociated (anionic) ligand that may compete for electrostatic attraction on protonated amine groups and therefore leads to a decrease in sorption capacities.
在含有金属离子的溶液中存在有机配体会改变金属的形态,这反过来又会改变吸附机制、最佳pH范围和最大吸附容量。本研究考察了在不同金属/配体比例下,壳聚糖在柠檬酸盐存在时对铜的吸附情况。在酸性溶液中,壳聚糖质子化的胺基与阴离子型柠檬酸铜络合物(主要是Cu(OH)L2-,也有一小部分是CuL-)之间通过静电吸引作用来摄取铜。在pH 3以下,由于用于控制pH的酸解离产生的离解阴离子配体和抗衡离子的竞争,吸附作用可以忽略不计。实际上,当阴离子型铜络合物的比例超过无铜阴离子配体的比例时,铜的吸附开始显著。因此,吸附容量在pH 4.5 - 5.5时强烈增加。在pH 5.5以上,胺质子化程度的逐渐降低导致吸附容量呈线性下降。配体过量会导致游离离解(阴离子)配体比例增加,这些配体可能会竞争质子化胺基上的静电吸引,从而导致吸附容量下降。