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A Feasibility Study of Ammonia Recovery from Coking Wastewater by Coupled Operation of a Membrane Contactor and Membrane Distillation

机译:膜接触器与膜蒸馏耦合运行从焦化废水中回收氨的可行性研究

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摘要

More than 80% of ammonia (NH3) in the steel manufacturing process wastewater is contributed from the coking wastewater, which is usually treated by biological processes. However, the NH3 in the coking wastewater is typically too high for biological treatment due to its inhibitory concentration. Therefore, a two-stage process including a hollow fiber membrane contactor (HFMC) and a modified membrane distillation (MD) system was developed and applied to reduce and recover NH3 from coking wastewater. The objectives of this paper are to evaluate different membrane materials, receiving solutions, and operation parameters for the system, remove NH3 from the coking wastewater to less than 300 mg N/L, which is amenable to the biological process, and recover ammonia solution for reuse. As a result, the polytetrafluoroethylene (PTFE) HFMC using sulfuric acid as a receiving solution can achieve a maximum NH3-N transmembrane flux of 1.67 g N/m2·h at pH of 11.5 and reduce NH3 in the coking wastewater to less than 300 mg N/L. The NH3 in the converted ammonium sulfate ((NH4)2SO4) was then recovered by the modified MD using ice water as the receiving solution to produce ≥3% of ammonia solution for reuse.
机译:炼钢废水中80%以上的氨(NH3)来自炼焦废水,通常通过生物工艺进行处理。但是,焦化废水中的NH3浓度过高,因此无法进行生物处理。因此,开发了包括中空纤维膜接触器(HFMC)和改性膜蒸馏(MD)系统的两步工艺,并将其应用于减少和回收焦化废水中的NH3。本文的目的是评估系统的不同膜材料,接收溶液和操作参数,将焦化废水中的NH3去除至低于300 mg N / L(适合于生物过程),并回收氨溶液用于处理。重用。结果,使用硫酸作为接收溶液的聚四氟乙烯(PTFE)HFMC在11.5的pH值下可获得最大的NH3-N跨膜通量为1.67 g N / m 2 ·h,并减少NH3中的NH3。炼焦废水的氮含量低于300 mg / L。然后,使用冰水作为接收溶液,通过改性MD回收转化硫酸铵((NH4)2SO4)中的NH3,以产生≥3%的氨溶液供重复使用。

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