Laboratoire de Génie des Procédés Traitement des Effluents, Ecole Nationale Supérieure de Chimie de Mulhouse, Université de Haute Alsace, 3 rue Alfred Werner, 68093 Mulhouse, France.
Water Sci Technol. 2010;61(8):2143-9. doi: 10.2166/wst.2010.050.
Effect of the solution initial pH was investigated on the performance of photo-Fenton process using Fe-ZSM5 zeolite as a heterogeneous catalyst for degradation of azo dye Acid Red 14. All experiments were performed in a 1.0 L tubular closed circulation batch photo-reactor. The dye degradation quantum yield was maximal when the solution initial pH was about 5. An amount of about 0.3 mg L(-1) of Fe ions leached out of the zeolite. However, monitoring Fe ion concentration during the experiments showed that the efficiency of the process is not due to the leached Fe ions. The effect of pH on decomposition rate of hydrogen peroxide in different systems such as H(2)O(2) alone, UV/H(2)O(2), UV/Zeolite and UV/Zeolite/H(2)O(2) was explored in detail to explain the results obtained.
采用 Fe-ZSM5 沸石作为非均相催化剂,研究了溶液初始 pH 值对光芬顿法降解偶氮染料酸性红 14 性能的影响。所有实验均在 1.0 L 管状闭路循环批量光反应器中进行。当溶液初始 pH 值约为 5 时,染料降解量子产率最大。约有 0.3mgL(-1)的 Fe 离子从沸石中浸出。然而,实验过程中监测 Fe 离子浓度表明,该过程的效率并非归因于浸出的 Fe 离子。详细探讨了 pH 值对不同体系中过氧化氢分解速率的影响,如单独的 H(2)O(2)、UV/H(2)O(2)、UV/沸石和 UV/沸石/H(2)O(2),以解释所得到的结果。