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Integrated electrochemically enhanced adsorption with electrochemical regeneration for removal of acid orange 7 using activated carbon fibers

机译:集成电化学增强吸附和电化学再生技术,可使用活性炭纤维去除酸性橙7

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The main objective of this study is to explore the feasibility of the combination of enhanced adsorption for acid orange 7 (A07) in solution and regeneration of activated carbon fibers (ACFs) by electrochemical method. Electrochemical polarization can cause an increase of the adsorption rate and capacity for A07 on the ACFs. The adsorption rate and capacity at the polarization of 600 mV increase by 120% and 115%, respectively. In all these cases the adsorption isotherms are in good agreement with Langmuir isotherm model. The effective electrochemical regeneration of ACFs saturated with A07 is realizable. The regeneration efficiency of over 90% is achievable at —5 V, and the regeneration potential higher than —5 V is not advantageous to the readsorption of A07. The results of the integrative electrosorption/regeneration cycle experiment show that the regeneration efficiency still maintains over 70% after 10 cycles. The integrative electrosorption/regeneration cycle process can reduce the regeneration procedure, and also decrease the adsorption costs. These indicate that the integrative electrosorption/regeneration cycle process is technically feasible and promising for the treatment of industrial effluents and the purification of supplying water.
机译:这项研究的主要目的是探讨增强酸性橙7(A07)在溶液中的吸附与活性炭纤维(ACFs)的电化学结合的可行性。电化学极化可导致ACF上A07的吸附速率和容量增加。 600 mV极化时的吸附率和容量分别增加120%和115%。在所有这些情况下,吸附等温线都与Langmuir等温线模型良好吻合。可以实现用A07饱和的ACF的有效电化学再生。在-5 V时可实现超过90%的再生效率,而高于-5 V的再生电势不利于A07的再吸收。综合电吸附/再生循环实验的结果表明,再生效率在10个循环后仍保持70%以上。集成的电吸附/再生循环过程可以减少再生程序,还可以降低吸附成本。这些表明集成的电吸附/再生循环过程在技术上是可行的,并且对处理工业废水和纯化供水有希望。

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