K. Stemmler et al., Oxidation of metal-diethylenetriamine-pentaacetate (DTPA) - Complexes during drinking water ozonation, WATER RES, 35(8), 2001, pp. 1877-1886
This study investigates the oxidative transformation of diethylenetriaminep
entaacetate (DTPA). a synthetic ligand. during drinking water ozonation. Th
e rate coefficients for the reactions of CaDTPA(3-) and ZnDTPA(3-) with ozo
ne were determined to be 6200 and 3500 +/- 150 M-1, respectively. The react
ivity of Fe(III)DTPA(2-) towards ozone was found to be much lower (< 10 M(-
1)s(-1)), but near neutral pH the reactivity of the Fe(III)-complexes is do
minated by [Fe(III)(OH)]DTPA(3-). For the reaction of Fe[(III)(OH)]DTPA(3)
with ozone a rate coefficient of 2.4 <plus/minus> 0.2 x 10(5)M(-1) s(-1) wa
s measured. The rate coefficients of the reactions of the ZnDTPA-and Fe(III
)DTPA with OH radicals have been determined by a competitive method as 2.4
+/- 0.4 x 10(9) and 1.5 +/- 0.1 x 10(9) M-1 s(-1), respectively at pH = 7.
The degradation of low concentrations of DTPA complexes during ozonation wa
s investigated in natural waters under drinking water relevant conditions.
Based on our findings CaDTPA(3-) and ZnDTPA(3-) are judged as easily degrad
able. Fe(III)DTPA complexes showed a somewhat lower reactivity, but were st
ill typically degraded by one order of magnitude at ozone dosages of simila
r to 20 muM (1 mg L-1) in the three natural waters tested. Molecular ozone
was found to be the major oxidant for the metal-DTPA complexes during ozona
tion. (C) 2001 Elsevier Science Ltd. All rights reserved.