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Optimisation of Fenton's reagent usage as a pre-treatment for fermentation brines

机译:优化Fenton试剂用于发酵盐水的预处理

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Pre-treatment of fermentation brines from green olives has been carried out by the Fe(II)/Fe(IlI)/ H_2O_2 system. Reagent concentration exerted a positive influence on chemical oxygen demand (COD) removal. Hydrogen peroxide uptake showed values in the range 0.3―1.6 mol of COD eliminated per mol of H_2O_2 consumed depending on operating conditions. The optimum working pH was found to be in the interval 2.0―3.5. Reaction temperature increased the COD degradation rate, although similar COD conversion values were obtained after 5h of treatment regardless of the value of this parameter. An analysis of the biodegradability of this type of effluent demonstrated the beneficial effect of the chemical pre-oxidation. According to the experimental results, it is suggested that there is an inhibitory effect of the wastewater due to its COD content and nature rather than attributable to the presence of high amounts of sodium chloride. Biodegradation efficiency increased as temperature was raised up to 30℃. A further increase of this parameter up to 40℃ resulted in the death of the microorganisms.
机译:通过Fe(II)/ Fe(III)/ H_2O_2系统对绿橄榄发酵盐水进行了预处理。试剂浓度对化学需氧量(COD)的去除具有积极影响。根据操作条件,每摩尔消耗的H_2O_2,过氧化氢的吸收值显示在0.3〜1.6摩尔的COD消除范围内。发现最佳工作pH为2.0-3.5。反应温度提高了COD降解速率,尽管在处理5小时后获得了相似的COD转化率值,而与该参数的值无关。对该类型废水的生物降解性进行分析,证明了化学预氧化的有益作用。根据实验结果,表明废水的抑制作用是由于其COD含量和性质,而不是归因于大量氯化钠的存在。随着温度升高至30℃,生物降解效率提高。将该参数进一步提高到40℃会导致微生物死亡。

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