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Treatment of olive oil mill wastewater by Fenton's reagent.

机译:用Fenton试剂处理橄榄油厂废水。

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摘要

Wastewater from olive oil mills has been treated by means of the Fe(II)/H(2)O(2) system (Fenton's reagent). Typical operating variables such as reagent concentration (C(H(2)O(2)) = 1.0--0.2 M; C(Fe(II)) = 0.01--0.1 M) and temperature (T = 293--323 K) exerted a positive influence on the chemical oxygen demand and total carbon removal. The optimum working pH was found to be in the range 2.5--3.0. The exothermic nature of the process involved a significant increase of the temperature of the reaction media. The process was well simulated by a semiempirical reaction mechanism based on the classic Fenton chemistry. From the model, the reaction between ferric iron and hydrogen peroxide [k = 1.8 x 10(15) exp((-12,577 +/- 1248)/T)] was suggested to be the controlling step of the system. Also, the simultaneous inefficient decomposition of hydrogen peroxide [k = 6.3 x 10(12) exp((-11,987 +/- 2414)/T)] into water and oxygen was believed to play an important role in the process. On the basis of stoichiometric calculations for hydrogen peroxide consumption, an estimation of the process economy has been completed.
机译:来自橄榄油厂的废水已通过Fe(II)/ H(2)O(2)系统(芬顿试剂)进行了处理。典型的操作变量例如试剂浓度(C(H(2)O(2))= 1.0--0.2 M; C(Fe(II))= 0.01--0.1 M)和温度(T = 293--323 K )对化学需氧量和总碳去除量产生了积极影响。发现最佳工作pH在2.5--3.0范围内。该方法的放热性质涉及反应介质温度的显着升高。通过基于经典Fenton化学的半经验反应机理对该过程进行了很好的模拟。根据该模型,建议将铁离子与过氧化氢之间的反应[k = 1.8 x 10(15)exp((-12,577 +/- 1248)/ T)]作为系统的控制步骤。同样,过氧化氢的同时低效分解[k = 6.3 x 10(12)exp((-11,987 +/- 2414)/ T)]分解为水和氧气在该过程中起重要作用。基于过氧化氢消耗量的化学计量计算,已经完成了对过程经济性的估算。

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