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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Industrial wastewater treatment using magnesium electrocoagulation in batch and continuous mode
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Industrial wastewater treatment using magnesium electrocoagulation in batch and continuous mode

机译:用批量和连续模式使用镁电凝的工业废水

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摘要

In the present study, the electrocoagulation (EC) performance of a Mg-Mg system was applied for the industrial wastewater treatment, from an industrial park that covers different activities such as: food, automotive, pharmaceutical, chemistry and cosmetics, after primary clarification. The effects of major operating parameters such as pH, reaction time, and current density were investigated for chemical oxygen demand (COD), color, and turbidity removal efficiency. The batch system was found convenient, achieving 63.52% COD, 96% color, and 99.32% turbidity removal at optimized operating conditions of pH 7.12, reaction time of 75 min, and current density of 201.5 A/m(2). On the other hand, for continuous EC, the process removed approximately 46.58%, 95.96%, and 87.19% of the COD, color, and turbidity respectively, at 90 min of retention time, current density 440 A/m(2), and a rate of 20 mL/min. Additionally, concerning nutrient removal (N and P), the EC system with Mg electrodes was highly efficient; batch treatment removed 97% of total phosphorus and 67% of ammoniacal nitrogen, whereas the continuous treatment removed 98.5% of total phosphorus and 83% of ammoniacal nitrogen. The sludge characterization before and after EC treatment was made by SEM, EDS, Fluorescence spectroscopy, IR spectroscopy. Minerals such as chlorite, crossite, richterite, pyroaurite, langbeinite as weel as aliphatic and polysubstituted aromatics compounds, sulfates and phosphates inorganic ions, and organic phosphorus were reduced. The energy cost in the batch EC is US$0.05/m(3). A numerical CFD model was used to estimate the velocity fields and guarantee the presence of turbulent kinetic energy within a continuous flow reactor.
机译:在本研究中,Mg-Mg系统的电凝(EC)性能适用于工业园区的工业废水处理,该工业园区涵盖不同的活动,如:食品,汽车,制药,化学和化妆品,澄清后。研究了主要操作参数如pH,反应时间和电流密度的影响,用于化学需氧量(COD),颜色和浊度去除效率。发现批量系统方便,达到63.52%的COD,96%的颜色和99.32%的浊度去除在PH 7.12的优化操作条件下,反应时间为75分钟,电流密度为201.5A / m(2)。另一方面,对于连续EC,该过程分别除去约46.58%,95.96%和87.19%,分别在90分钟的保留时间,电流密度440a / m(2),和速率为20毫升/分钟。另外,关于营养去除(N和P),具有Mg电极的EC系统高效;分批处理除去了总磷的97%和67%的氨氮,而连续处理除去了总磷的98.5%和83%的氨氮。 EC治疗前后的污泥表征是通过SEM,EDS,荧光光谱,红外光谱进行IR光谱。矿物质如亚氯酸盐,横梁,石英罐,枸橼酸盐,兰布尼石作为脂肪族和多助药的芳烃化合物,硫酸盐和磷酸盐无机离子,以及有机磷。批量EC的能源成本为0.05 / m(3)。数值CFD模型用于估计速度场,并保证在连续流动反应器内的湍流动能。

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