利用煤矸石与钛渣制备聚合硫酸铝铁钛混凝剂

Preparation of Polyaluminum Ferrotitanium Sulfate Based on Coal Gangue and Titanium Slag

  • 摘要: 为实现煤矸石、钛渣资源化利用,以煤矸石和钛渣为原料,通过热活化、改性、聚合、熟化、离心干燥等制备出了无机混凝剂聚合硫酸铝铁钛(PAFTS),考察了钛铁摩尔比、聚合溶液pH值、聚合时间、聚合温度、熟化时间、熟化温度等制备因素以及混凝剂投加量、水体初始 pH、慢搅(50 r/min)时间、静置时间等混凝条件对其混凝性能的影响,确定了最佳制备因素及混凝条件。结果表明,在钛铁摩尔比为0.4、聚合溶液pH=1.5、聚合温度70 ℃、聚合时间4 h、熟化温度40 ℃、熟化时间24 h时制备的PAFTS混凝性能最佳,其对模拟废水的浊度、COD、UV254去除率分别为96.0%、46.0%和41.0%。随后,利用该PAFTS确定其最佳的工况条件为投加量80 mg/L、水体初始pH=7、慢搅时间15 min以及静置时间20 min,对浊度去除率为97.9%。

     

    Abstract: Coal gangue is a by−product generated during the mining and washing processes of coal mines, which is rich in silicon, aluminium and iron. Titanium slag is produced in the titanium extraction process of ilmenite smelting, and its titania content is usually over 20%. In order to realize the resource utilization of coal gangue and titanium slag, an inorganic coagulant, i.e., polyaluminum ferrotitanium sulfate (PAFTS), was prepared from coal gangue and titanium slag by thermal activation, modification, ageing, polymerization, centrifugation and drying. The effects of the preparation factors such as the molar ratio of titanium to iron (Ti/Fe), polymerization solution pH, polymerization time, polymerization temperature, ageing time and ripening temperature on the coagulant were investigated. Additionally, the influence of coagulant dosage, initial pH, slow stirring time (50 r/min) and standing time on the coagulation performance of PAFTS were explored using simulated wastewater prepared by kaolin. The optimal preparation factors and coagulation conditions were thus determined. The results show that the best coagulation performance of PAFTS is achieved at a Ti/Fe molar ratio of 0.4, polymerization solution pH of 1.5, polymerization time of 4 h, polymerization temperature of 70 ℃, ripening temperature of 40 ℃ and aging time of 24 h, and the removal of turbidity, COD and UV254 of the simulated wastewater are 96.0%, 46.0% and 41.0%, respectively, under the conditions of 100 mg/L of PAFTS dosage, reaction solution pH of 7, 10 min of slow stirring time and 30 min of standing time, and the preparation cost of PAFTS in the laboratory is approximately ¥87.5/kg. Subsequently, the optimum working conditions of PAFTS prepared in the above optimal preparation condition are obtained at 80 mg/L of PAFTS dosage, initial pH of 7, 15 min of slow stirring time and 20 min of standing time, which results in 97.9% removal of turbidity. This work provides a method for the preparation of polymetallic coagulant and a new idea for the resource utilization of coal gangue and titanium slag.

     

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