首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Removal of As(V) from simulated groundwater using forward osmosis: Effect of competing and coexisting solutes
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Removal of As(V) from simulated groundwater using forward osmosis: Effect of competing and coexisting solutes

机译:使用正向渗透法从模拟地下水中去除As(V):竞争性和共存溶质的影响

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摘要

Forward osmosis has been proven to be effective for the removal of several inorganic (neutral or ionic) and organic contaminants from aqueous solution. We studied the rejection behavior of As(V) in the presence of several co-occurring solutes (nitrate, fluoride, sulfate, phosphate, silicate, bicarbonate and humic acid). Silicate shows no significant effect whereas phosphate lowers the As(V) rejection substantially (from 95.5 to 80.5%). The increase of rejection of As(V) in the presence of co-existing solutes follows the sequence humic acid > bicarbonate > nitrate > fluoride > sulfate > phosphate. Donnan exclusion, size exclusion, and diffusion of the solutes are factors that may explain the rejection behavior. Additionally, the fouling layer formed by humic acid and the increase in pH due to the presence of bicarbonate helps to enhance the removal efficiency. In contrast, concentration polarization was observed to be insignificant as the water flux was low. It was concluded that forward osmosis can successfully remove arsenic from groundwater containing various coexisting and competing solutes and therefore can be considered as an important alternative for practical application.
机译:事实证明,正向渗透可有效去除水溶液中的几种无机(中性或离子性)和有机污染物。我们研究了在几种共存溶质(硝酸盐,氟化物,硫酸盐,磷酸盐,硅酸盐,碳酸氢盐和腐殖酸)存在下As(V)的排斥行为。硅酸盐显示没有显着影响,而磷酸盐则显着降低了As(V)的排斥(从95.5降低到80.5%)。在共存的溶质存在下,As(V)的截留率增加遵循以下顺序:腐殖酸>碳酸氢盐>硝酸盐>氟化物>硫酸盐>磷酸盐。 Donnan排除,尺寸排除和溶质扩散是可以解释排斥行为的因素。另外,由腐殖酸形成的结垢层以及由于碳酸氢盐的存在而引起的pH值增加有助于提高去除效率。相反,当水通量低时,观察到浓度极化不明显。结论是,正向渗透可以成功地从含有各种共存和竞争性溶质的地下水中去除砷,因此可以认为是实际应用的重要替代方法。

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