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Removal and recovery of phosphate from municipal wastewaters using a polymeric anion exchanger bound with hydrated ferric oxide nanoparticles

机译:使用与水合氧化铁纳米粒子结合的聚合阴离子交换剂从市政废水中去除和回收磷酸盐

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A new type of ion exchange media which is highly selective for phosphate, and can be easily regenerated has been investigated. The media consists of hydrated ferric oxide nanoparticles dispersed within the pore structures of polymeric anion exchanger beads. The media combines the durability and mechanical strength of ion exchange resins with the high sorption capacity of ferric oxide for phosphate. The media was trialled in fixed bed mini column experiments with real final effluent from two UK sewage treatment works, one with treatment based on chemical precipitation with iron chloride salts into an activated sludge process (population >250,000), and one based on trickling filter treatment with no specific phosphorus removal process (population < 10,000). Results show that the media has high capacity for removing phosphate, reaching capacity at 4000 and 1300 bed volumes for the chemical precipitation and trickling filter works respectively, with performance greatly exceeding that of a standard anion exchanger, Amberlite IRA-410. Also trialled was the media's ability to elute the phosphorus after breakthrough, with the aim of recovering and processing it into a useful product. A one step regenerative process using a single solution containing 4% NaOH and 2% NaCl was passed through the resin bed and the phosphorus concentration of each bed volume leaving the column analysed. 80% of the phosphorus was eluted in the first bed volume. Subsequent tests investigated the performance of the media after successive partial regenerations of one bed volume of the NaOH/NaCl solution. There was no loss of performance observed after ten regeneration cycles, and levels of eluted phosphate were consistently high. These results suggest that the media has high potential for the removal and recovery of phosphate from wastewater streams. Additionally, the small volume of regenerant required translates to a very small operational footprint.
机译:已经研究了一种新型的离子交换介质,该介质对磷酸盐具有高度选择性,并且易于再生。介质由分散在聚合阴离子交换剂微珠孔结构中的水合氧化铁纳米颗粒组成。该介质将离子交换树脂的耐用性和机械强度与氧化铁对磷酸盐的高吸附能力结合在一起。在固定床微型柱实验中对介质进行了试验,对来自英国两家污水处理厂的实际最终废水进行了试验,其中一种采用氯化铁盐化学沉淀法处理成活性污泥工艺(人口> 250,000),另一种采用滴滤法处理没有特定的除磷工艺(人口<10,000)。结果表明,该介质具有很高的去除磷酸盐的能力,分别达到了4000和1300床体积的化学沉淀和滴滤滤池工作能力,其性能大大超过了标准阴离子交换剂Amberlite IRA-410。还试验了介质突破后洗脱磷的能力,旨在将其回收并加工成有用的产品。使用包含4%NaOH和2%NaCl的单一溶液的一步再生过程通过树脂床,并分析每个床体积的磷浓度,然后分析色谱柱。 80%的磷在第一床体积中被洗脱。随后的测试研究了一个床体积的NaOH / NaCl溶液的连续部分再生后介质的性能。十个再生循环后未观察到性能损失,并且洗脱的磷酸盐水平始终很高。这些结果表明,该介质具有从废水流中去除和回收磷酸盐的高潜力。另外,所需的少量再生剂转化为非常小的操作足迹。

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