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Adsorption removal of tetracycline from aqueous solution by anaerobic granular sludge: Equilibrium and kinetic studies

机译:厌氧颗粒污泥从水溶液中吸附去除四环素的平衡和动力学研究

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High concentration animal wastewater is often contaminated by tetracycline and an upflow anaerobic sludge bioreactor (UASB) with granular sludge is often used to treat the wastewater. The investigation of the adsorption process of tetracycline on anaerobic granular sludge during anaerobic digestion of animal wastewater will increase the understanding of antibiotics behavior in the UASB reactor. In this study, the effects of initial pH, humic acid concentration, and temperature on the removal of tetracycline by anaerobic granular sludge from aqueous solution were investigated using the batch adsorption technique in 100 mL flasks with 75 mL of work volume. The results show that the highest removal efficiency of 93.0% was achieved around pH 3.0 and the removal efficiency at the neutral pH range (pH 6.0-8.0) is about 91.5%. The thermodynamic analysis indicates that the adsorption is a spontaneous and endothermic process. The adsorption kinetics followed the pseudosecond- order equation. The adsorption isotherms analysis indicates that the Langmuir model is better than the Freundlich model for the description of the adsorption process and confirms the result of thermodynamics analysis. The maximum adsorption capacities were 2.984, 4.108 and 4.618 mg/g at 25, 35 and 45 WC, respectively. These results provide useful information for understanding the fate and transformation of tetracycline in a UASB digestion system and improving the management of tetracycline contaminated animal wastewater.
机译:高浓度的动物废水经常被四环素污染,带有颗粒污泥的上流厌氧污泥生物反应器(UASB)通常用于处理废水。对动物废水进行厌氧消化过程中四环素在厌氧颗粒污泥上的吸附过程的研究将增加对UASB反应器中抗生素行为的了解。在这项研究中,使用批吸附技术,在工作体积为75 mL的100 mL烧瓶中,研究了初始pH,腐殖酸浓度和温度对厌氧颗粒污泥从水溶液中去除四环素的影响。结果表明,在pH 3.0左右达到了最高的去除效率93.0%,在中性pH范围(pH 6.0-8.0)下的去除效率约为91.5%。热力学分析表明吸附是一个自发的吸热过程。吸附动力学遵循伪二级方程。吸附等温线分析表明,Langmuir模型比Freundlich模型更好地描述了吸附过程,并证实了热力学分析的结果。在25、35和45 WC下的最大吸附容量分别为2.984、4.108和4.618 mg / g。这些结果为了解四环素在UASB消化系统中的命运和转化以及改善四环素污染的动物废水的管理提供了有用的信息。

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