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Influence of pH and ionic strength on Cu(II) biosorption by aerobic granular sludge and biosorption mechanism

机译:pH和离子强度对好氧颗粒污泥对Cu(II)生物吸附的影响及生物吸附机理

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BACKGROUND: To elucidate the process and mechanism of Cu(II) biosorption onto aerobic granules, the influence of pH and ionic strength (IS) on the Cu(II) biosorption capacity and biosorption mechanism was studied. RESULTS: The biosorption of Cu(II) onto aerobic granules under different conditions of pH (3, 4 and 5), IS (0, 0.1 and 0.5mol L-1) and Cu(II) concentration (25-250 mg L-1) was investigated. The correlation coefficients of the pseudo-second-order kinetic model were R-2(2) > 0.99, while those of the Langmuir and Freundlich models were R-1(2) > 0.975 and R-2(2) > 0.955 respectively. The biosorption of Cu(II) increased with increasing pH, while the effect of IS on the biosorption was complicated, which could be explained by the competition among different metallic ions, colloidal chemistry theory or Derjaguin, Landau, verwey and Overbeek (DLVO) theory. About 70% of the solid phase Cu(II) was exchanged by Na(I), Ca(II) and Mg(II) released from the aerobic granules at pH 4 and 5. The results revealed that ion exchange is the most important biosorption mechanism but that other mechanisms also play a part. CONCLUSION: The sorption performance can be optimised by adjusting the pH and IS. Aerobic granules can be used as an alternative effective, economical and practical biosorbent for heavy metal removal. (c) 2008 Society of Chemical Industry.
机译:背景:为阐明需氧颗粒上Cu(II)的生物吸附过程和机理,研究了pH和离子强度(IS)对Cu(II)的生物吸附能力和生物吸附机理的影响。结果:在不同pH(3、4和5),IS(0、0.1和0.5mol L-1)和Cu(II)浓度(25-250 mg L-)下,Cu(II)在好氧颗粒上的生物吸附1)进行了调查。伪二级动力学模型的相关系数为R-2(2)> 0.99,而Langmuir模型和Freundlich模型的相关系数分别为R-1(2)> 0.975和R-2(2)> 0.955。 Cu(II)的生物吸附随着pH值的增加而增加,而IS对生物吸附的影响则很复杂,这可以用不同金属离子之间的竞争,胶体化学理论或Derjaguin,Landau,verwey和Overbeek(DLVO)理论之间的竞争来解释。 。在pH 4和5时,好氧颗粒中释放的Na(I),Ca(II)和Mg(II)交换了约70%的固相Cu(II)。结果表明,离子交换是最重要的生物吸附机制,但其他机制也起作用。结论:通过调节pH和IS可以优化吸附性能。好氧颗粒可以用作替代有效,经济和实用的生物吸附剂,以去除重金属。 (c)2008年化学工业协会。

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