Wang Shunwu, Li Ziwang, Yu Qinglong
College of Chemistry and Chemical Engineering, Northeast Petroleum University, Daqing 163318, China E-mail:
College of Chemistry and Chemical Engineering, Northeast Petroleum University, Daqing 163318, China.
Water Sci Technol. 2017 Jan;75(1-2):11-19. doi: 10.2166/wst.2016.470.
Guar gum is considered as a main component of oilfield wastewater. This work is intended to optimize the experimental conditions (HO dosage, Fe dosage, initial concentration of organics, initial pH and temperature) for the maximum oxidative degradation of guar gum by Fenton's reagent. The kinetics of guar gum removal were evaluated by means of the chemical oxygen demand (COD) and the absorbance measurements. The batch experiment results showed that the optimum conditions were: HO dosage, 10,000 mg/L; Fedosage, 2,000 mg/L; initial concentration of organics, 413 mg/L; pH, 3 and temperature, 35 °C, under which the COD removal could reach 61.07% and fairly good stability could be obtained. Under the optimum experimental conditions, using UV irradiation to treat the wastewater, the photo-Fenton systems can successfully eliminate COD from guar gum solution. The COD removal always obeyed a pseudo-first-order kinetics and the degradation rate (k) was increased by 25.7% in the photo-Fenton process compared to the Fenton process. The photo-Fenton system needed less time and consequently less quantity of HO to obtain the same results as the Fenton process. The photo-Fenton process needs a dose of HO 20.46% lower than that used in the Fenton process to remove 79.54% of COD. The cost of the photo/Fenton process amounted to RMB9.43/m, which was lower than that of the classic Fenton process alone (RMB10.58/m) and the overall water quality of the final effluent could meet the class Ι national wastewater discharge standard for the petrochemical industry of China.
瓜尔胶被认为是油田废水的主要成分。这项工作旨在优化实验条件(过氧化氢用量、铁用量、有机物初始浓度、初始pH值和温度),以实现芬顿试剂对瓜尔胶的最大程度氧化降解。通过化学需氧量(COD)和吸光度测量来评估瓜尔胶去除的动力学。间歇实验结果表明,最佳条件为:过氧化氢用量10000mg/L;铁用量2000mg/L;有机物初始浓度413mg/L;pH值为3,温度为35℃,在此条件下COD去除率可达61.07%,且能获得相当好的稳定性。在最佳实验条件下,采用紫外线照射处理废水,光芬顿系统能够成功去除瓜尔胶水溶液中的COD。COD去除始终遵循准一级动力学,与芬顿法相比,光芬顿法的降解速率(k)提高了25.7%。光芬顿系统达到与芬顿法相同的效果所需时间更短,因此过氧化氢用量更少。光芬顿法去除79.54%的COD所需的过氧化氢剂量比芬顿法低20.46%。光/芬顿法的成本为9.43元/立方米,低于单独的经典芬顿法(10.58元/立方米),最终出水的整体水质能够达到中国石化行业国家废水排放一级标准。