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Conversion of municipal wastewater-derived waste to an adsorbent for phosphorus recovery from secondary effluent

机译:将市政废水衍生的废物转化为吸附剂,以从二次废水中回收磷

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The sustainable management and recirculation of phosphorus resources are essential to our human lives. In this work, phosphorus removal and recovery from secondary effluent were achieved using municipal wastewater-derived materials as adsorbents. Through modification with 0.5 M NaOH for 30 min, iron containing sludge that originated from the coagulation pretreatment of municipal wastewater was successfully converted to phosphorus adsorbent. The maximal adsorption capacity of the prepared adsorbent was estimated to be 22 mg-P/g, and the adsorption performance remained stable in the pH range of 5-8. FeO(OH) was identified as the key adsorption site, and the ligand exchange mediated chemical adsorption was the main mechanism for phosphorus removal by the prepared material. Moreover, a laboratory-scale continuous-flow adsorption column experiment showed that the surplus phosphorus in secondary effluent could be readily reduced to <0.1 mg/L By pyrolysis of P-laden alkali-treated iron sludge under oxygen limited conditions, the phosphorus was recovered and successfully applied to support wheat growth. This work provides valuable information for both the sustainable management of phosphorus streams in wastewater and cyclic utilization of waste sludge.
机译:磷资源的可持续管理和再循环对我们人类的生活至关重要。在这项工作中,使用市政废水衍生的材料作为吸附剂,实现了二级废水的除磷和回收。通过用0.5 M NaOH改性30分钟,将源自市政废水混凝预处理的含铁污泥成功转化为磷吸附剂。所制备的吸附剂的最大吸附容量估计为22mg-P / g,并且在5-8的pH范围内吸附性能保持稳定。 FeO(OH)被确定为关键吸附位点,配体交换介导的化学吸附是所制备材料脱磷的主要机理。此外,实验室规模的连续流吸附柱实验表明,在含氧量有限的条件下,通过对含P的碱处理铁污泥进行热解,可以将二次废水中的剩余磷轻松降低至<0.1 mg / L。并成功地用于支持小麦生长。这项工作为废水中磷流的可持续管理以及废物污泥的循环利用提供了宝贵的信息。

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