Lucas Marco S, Peres José A
Centro de Química, Universidade de Trás-os-Montes e Alto Douro, Apartado 1013, 5001-801 Vila Real, Portugal.
J Hazard Mater. 2009 Sep 15;168(2-3):1253-9. doi: 10.1016/j.jhazmat.2009.03.002. Epub 2009 Mar 13.
This work describes the application of Fenton's reagent (H(2)O(2)/Fe(2+)) to the removal of chemical oxygen demand (COD) from olive mill wastewater (OMW) in a laboratory-scale batch reactor. The effect of different operational conditions, namely, hydrogen peroxide and ferrous ion concentrations, temperature and initial pH were evaluated. ORP, pH and dissolved oxygen were on-line monitored. Working with an initial pH equal to 3.5, a temperature of 30 degrees C, a molar ratio H(2)O(2)/Fe(2+)=15 and a weight ratio R=H(2)O(2)/COD=1.75 makes possible a COD conversion of 70%. A kinetic study was carried out using a modified pseudo-first-order model. The experiments performed at different temperatures allowed the calculation of the Arrhenius equation parameters and the global activation energy for the pseudo-first-order reaction (28.2 kJ/mol).
本研究描述了在实验室规模的间歇式反应器中,使用芬顿试剂(H₂O₂/Fe²⁺)去除橄榄榨油废水(OMW)中化学需氧量(COD)的应用。评估了不同操作条件的影响,即过氧化氢和亚铁离子浓度、温度和初始pH值。对氧化还原电位(ORP)、pH值和溶解氧进行了在线监测。当初始pH值等于3.5、温度为30℃、H₂O₂/Fe²⁺摩尔比为15且重量比R = H₂O₂/COD = 1.75时,COD转化率可达70%。使用修正的准一级模型进行了动力学研究。在不同温度下进行的实验使得能够计算阿累尼乌斯方程参数以及准一级反应的总活化能(28.2 kJ/mol)。