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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >The application of polyethylenimine grafting reverse osmosis membrane in treating boron-containing low-level radioactive wastewaters
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The application of polyethylenimine grafting reverse osmosis membrane in treating boron-containing low-level radioactive wastewaters

机译:聚乙烯菊氨酸移植反渗透膜在含硼低水平放射性废水处理中的应用

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BACKGROUND Reverse osmosis (RO), which is widely utilized in wastewater treatment, has been proven to be an effective tool for ion separation with high salts rejection. However, owing to the extremely low concentration of nuclides in boron-containing low-level radioactive wastewaters (LRWs), there is a significant reduction in rejection of nuclides by using commercial RO membranes. In this study, in order to obtain higher nuclides rejection under trace-level condition, novel polyamide RO membranes were fabricated by grafting polyethylenimine (PEI) with different molecular weights on commercial RO membrane surfaces. RESULTS The properties of PEI-modified membranes were analyzed, such as surface charge, morphology and hydrophilicity. The results showed that zeta potential at pH 7 increased from -22.89 mV to 20.19 mV, which indicated that surface charge altered from negative to positive. Meanwhile, hydrophilicity of membranes was improved since the contact angle decreased from 65 degrees to 36 degrees. The decontamination factor (DF) of cesium(I) increased from 11.69 to 114.23 and the DF of cobalt(II) increased from 28.62 to 3306.88. CONCLUSION The laboratory-scale experiments with cross-flow demonstrated the effective rejection of nuclides without obvious membrane flux loss of PEI-modified membranes. In addition, PEI-modified membranes offered a stable nuclides removal under high-level background boron and various pH conditions, which demonstrated a possible application in boron-containing LRW treatment. (c) 2019 Society of Chemical Industry
机译:背景技术逆转渗透(RO)被证明是一种具有高盐排斥的离子分离的有效工具。然而,由于含硼低水平放射性废水器(LRW)浓度极低的核素浓度,通过使用商业RO膜,抑制核苷酸的抑制性显着降低。在该研究中,为了在痕量条件下获得更高的核素排斥,通过在商业RO膜表面上的不同分子量接枝聚乙胺(PEI)来制造新的聚酰胺RO膜。结果分析了PEI改性膜的性质,例如表面电荷,形态和亲水性。结果表明,pH7的Zeta电位从-22.89 mV增加到20.19 mV,这表明表面电荷从阴性改变为阳性。同时,改善了膜的亲水性,因为接触角从65度降低至36度。铯(I)的去污因子(DF)从11.69增加到114.23,钴(II)的DF从28.62增加到3306.88。结论交叉流动的实验室规模实验证明了没有明显膜通量损失的核素的有效排斥菌改性膜。此外,PEI改性膜在高级背景硼和各种pH条件下提供了稳定的核素去除,这证明了含硼的LRW处理中可能的应用。 (c)2019年化学工业协会

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