共查询到2条相似文献,搜索用时 15 毫秒
1.
André Henrique Rosa Iramaia C. Bellin Danielle Goveia Luciana C. Oliveira Roberto W. Lourenço Peter Burba 《Analytica chimica acta》2006,567(2):152-159
A new procedure was developed in this study, based on a system equipped with a cellulose membrane and a tetraethylenepentamine hexaacetate chelator (MD-TEPHA) for in situ characterization of the lability of metal species in aquatic systems. To this end, the DM-TEPHA system was prepared by adding TEPHA chelator to cellulose bags pre-purified with 1.0 mol L−1 of HCl and NaOH solutions. After the MD-TEPHA system was sealed, it was examined in the laboratory to evaluate the influence of complexation time (0-24 h), pH (3.0, 4.0, 5.0, 6.0 and 7.0), metal ions (Cu, Cd, Fe, Mn and Ni) and concentration of organic matter (15, 30 and 60 mg L−1) on the relative lability of metal species by TEPHA chelator. The results showed that Fe and Cu metals were complexed more slowly by TEPHA chelator in the MD-TEPHA system than were Cd, Ni and Mn in all pH used. It was also found that the pH strongly influences the process of metal complexation by the MD-TEPHA system. At all the pH levels, Cd, Mn and Ni showed greater complexation with TEPHA chelator (recovery of about 95-75%) than did Cu and Fe metals. Time also affects the lability of metal species complexed by aquatic humic substances (AHS); while Cd, Ni and Mn showed a faster kinetics, reaching equilibrium after about 100 min, and Cu and Fe approached equilibrium after 400 min. Increasing the AHS concentration decreases the lability of metal species by shifting the equilibrium to AHS-metal complexes. Our results indicate that the system under study offers an interesting alternative that can be applied to in situ experiments for differentiation of labile and inert metal species in aquatic systems. 相似文献
2.
Goveia D Rosa AH Bellin IC Lobo FA Fraceto LF Roveda JA Romão LP Dias Filho NL 《Analytical and bioanalytical chemistry》2008,390(4):1173-1180
This work involved the development and application of a new analytical procedure for in-situ characterization of the lability
of metal species in aquatic systems by using a system equipped with a diffusion membrane and cellulose organomodified with
p-aminobenzoic acid groups (DM-Cell-PAB). To this end, the DM-Cell-PAB system was prepared by adding cellulose organomodified
with p-aminobenzoic acid groups (Cell-PAB) to pre-purified cellulose bags. After the DM-Cell-PAB system was sealed, it was examined
in the laboratory. The in-situ application involved immersing the DM-Cell-PAB system in two different rivers, enabling us
to study the relative lability of metal species (Cu, Cd, Fe, Mn, and Ni) as a function of time and quantity of exchanger.
The procedure is simple and opens up a new perspective for understanding environmental phenomena relating to the complexation,
transport, stability, and lability of metal species in aquatic systems rich in organic matter. 相似文献