Flotation of Chromium Ions from Simulated Wastewater Using Air Microbubbles

Hayder Noori Abd Alhuseen, Nada N. Abdulrazzaq, R. Sedev
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Abstract

A microbubble air flotation technique was used to remove chromium ions from simulated wastewater (e.g. water used for electroplating, textiles, paints and pigments, and tanning leather). Experimental parameters were investigated to analyze the flotation process and determine the removal efficiency. These parameters included the location of the sampling port from the bottom of the column, where the diffuser is located to the top of flotation column (30, 60, and 90 cm), the type of surfactant (anionic, SDS, or cationic, CTAB) and its concentration (5, 10, 15, and 20 mg/L), the pH of the initial solution (3, 5, 7, 9, and 11), the initial contaminant concentration (10, 20, 30, and 40 mg/L), the gas flow rate (0.1, 0.2, 0.3, and 0.5 L/min), and the contact time (5, 10, 15, 20, 25, 30, and 35 min). The experimental results revealed that the highest removal efficiency (95%) was achieved in 20 min with a pH of 7, a flow rate of air 0.5 L/min, an SDS surfactant concentration of 15 mg/L, and a pollutant concentration of 30 mg/L at a sampling port height of 30 cm. The use of microbubbles in comparison to normal bubbles, resulted in a 56% improvement of the removal efficiency. The flotation process follows a first-order kinetics.
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利用空气微气泡浮选模拟废水中的铬离子
采用微气泡气浮技术去除模拟废水(如电镀、纺织、油漆和颜料以及鞣革用水)中的铬离子。对实验参数进行了研究,以分析浮选过程并确定去除效率。这些参数包括取样口的位置(从扩散器所在的浮选柱底部到浮选柱顶部)(30、60 和 90 厘米)、表面活性剂的类型(阴离子 SDS 或阳离子 CTAB)及其浓度(5、10、15 和 20 毫克/升)、初始溶液的 pH 值(3、5、7、9 和 11)、初始污染物浓度(10、20、30 和 40 毫克/升)、气体流速(0.1、0.2、0.3 和 0.5 升/分钟)以及接触时间(5、10、15、20、25、30 和 35 分钟)。实验结果表明,在取样口高度为 30 厘米、pH 值为 7、空气流量为 0.5 升/分钟、SDS 表面活性剂浓度为 15 毫克/升、污染物浓度为 30 毫克/升的条件下,20 分钟的去除率最高(95%)。与普通气泡相比,微气泡的使用使去除效率提高了 56%。浮选过程遵循一阶动力学。
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审稿时长
12 weeks
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