The efficacy of a binary oxidant system, hydrogen peroxide (H(2)O(2)) and persulfate, was investigated for treatment of 1,4-dioxane (dioxane) and trichloroethene (TCE) co-contamination. Batch experiments were conducted to examine the catalytic efficiency of Fe(2+) and NaOH-based activation, oxidant decomposition rates, contaminant degradation effectiveness, and competitive degradation effects. For NaOH activation, the oxidant decomposition rate was moderate and sustained during the entire test period of 96Â h. However, dioxane degradation was limited (~â33%). Conversely, the oxidants were depleted within 24Â h for the Fe(2+)-activated system, and dioxane degradation was complete within 4Â h. The activation and radical generation processes were different between Fe(2+) and NaOH activation. Both dioxane and TCE underwent complete degradation in the co-contaminant experiment. The results of this study indicate that the Fe(2+)-catalyzed binary hydrogen peroxide-persulfate oxidant system is effective for oxidation of the tested contaminants separately and as co-contaminants.
Treatment of 1,4-dioxane and trichloroethene co-contamination by an activated binary persulfate-peroxide oxidation process.
采用活性二元过硫酸盐-过氧化物氧化工艺处理1,4-二噁烷和三氯乙烯共污染。
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| 期刊: | Environmental Science and Pollution Research | 影响因子: | 0.000 |
| 时间: | 2018 | 起止号: | 2018 Nov;25(32):32088-32095 |
| doi: | 10.1007/s11356-018-3153-1 | ||
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