Determination of hardness in tapwater and upland soil extracts using a long-term stable divalent cation selective electrode based on a lipophilic acrylate resin as a membrane matrix

Citation
M. Numata et al., Determination of hardness in tapwater and upland soil extracts using a long-term stable divalent cation selective electrode based on a lipophilic acrylate resin as a membrane matrix, TALANTA, 55(3), 2001, pp. 449-457
Citations number
23
Categorie Soggetti
Spectroscopy /Instrumentation/Analytical Sciences
Journal title
TALANTA
ISSN journal
00399140 → ACNP
Volume
55
Issue
3
Year of publication
2001
Pages
449 - 457
Database
ISI
SICI code
0039-9140(20010913)55:3<449:DOHITA>2.0.ZU;2-N
Abstract
A divalent cation-selective electrode, which utilizes a lipophilic resin as a matrix for the sensing membrane, and which has long-term stability has b een developed. The sensing membrane is a lipophilic acrylate resin which is impregnated with a solution of 1-decylalcohol and the calcium salt of bis[ 4-(1,1,3,3-tetramethylbutyl) phenyl] phosphate at concentrations of 0.08 g ml(-1) each. The electrode exhibited nearly equal selectivity to Ca2+ and M g2+ ions and could be used as a water hardness sensor. The electrode shows a Nernstian response with a slope of 29 mV decade(-1) to both Ca2+ and Mg2 ions in the concentration range from 10(-5) M to 10(-1) M and could be use d in the pH range from 3 to 10 for the determination of 10(-3) M Ca2+ and M g2+ solutions. The initial performance of the electrode could be maintained for I year, since the lifetime test of the electrode was conducted in tapw ater at a continuous flow rate of 4 ml min(-1). The hardnesses of tapwater and upland soil extracts were determined using the developed electrode and the analytical results were in good agreement with those obtained by chelat ometric titration using an EDTA solution as the titrant. A coefficient fact or of correlation 0.998 was obtained between the electrode method and titri metry. The long-term stability of the electrode was found to be due to stro ng affinity of 1-decylalcohol to the lipophilic acrylate resin. (C) 2001 El sevier Science B.V. All rights reserved.