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Synergistic photodegradation of pulp and paper mill wastewater by combined advanced oxidation process

机译:联合高级氧化协同降解纸浆和造纸厂废水。

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The photodegradation of pulp and paper mill wastewater via the combined advanced oxidation process (solar/Fe2+/TiO2/H2O2) has been investigated in a laboratory scale reactor. Central composite design (CCD) was used to evaluate the effect of four operational parameters, i.e., pH, Fe2+, TiO2 and H2O2, on the basis of chemical oxygen demand and colour removal and the optimum conditions were found to be at pH = 7, Fe2+ = 0.10 g/L, TiO2 = 0.13 g/L and H2O2 = 1.80 mL/L. The experimental responses of 98% COD and colour removal were observed at 75 min of treatment, with a significant increase in biodegradability from 0.22 to 0.60 at 45 min of treatment. The combined process followed the first order reaction, with a reaction rate constant of 0.0537 min(-1), which was 2.70 times and 3.38 times more effective than the solar photo-Fenton and solar photocatalytic processes respectively. A synergetic effect of 1.50 and synergetic biodegradability of 0.80 were exhibited in the combined process. The results showed that the combined process were more economically feasible than the solar photo-Fenton and solar photocatalytic processes. Under optimum conditions, an overall treatment cost of 14 US$/m(3) of the combined process per day was calculated.
机译:在实验室规模的反应器中,已经研究了通过组合的高级氧化工艺(太阳能/铁离子/二氧化钛/二氧化钛/二氧化氢)对纸浆和造纸厂废水的光降解。在化学需氧量和脱色的基础上,使用中央复合设计(CCD)评估了pH,Fe2 +,TiO2和H2O2四个操作参数的效果,发现最佳条件为pH = 7 Fe 2+ = 0.10g / L,TiO 2 = 0.13g / L和H 2 O 2 = 1.80mL / L。在处理75分钟时观察到98%COD和脱色的实验响应,在处理45分钟时生物降解性从0.22显着提高到0.60。合并过程遵循一级反应,反应速率常数为0.0537 min(-1),分别比太阳光芬顿法和太阳光催化法的效率高2.70倍和3.38倍。组合过程中表现出1.50的协同作用和0.80的协同生物降解性。结果表明,该组合工艺比太阳光芬顿法和太阳光催化法在经济上更可行。在最佳条件下,每天总处理成本为14 US $ / m(3)。

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