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Removal of Reactive Dyes from Aqueous Solution by Modified Electric Arc Furnace Slag

机译:通过改进的电弧炉炉渣从水溶液中除去反应性染料

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The utilization of modified electric arc furnace slag (EAFS) was successfully carried out to remove reactive dyes (SSB-BRF) from aqueous solutions. Modified EAFS was prepared and characterized by BET surface area analyzer and FESEM. The result of FESEM micrograph shows that the structure of modified EAFS has similar structure to the flower-like porous hematite (α-Fe_2O_3) nanoarchitectures composed of ultra-thin nanoflakes. Batch studies were carried out to address various experimental parameters such as adsorbent amount and concentration of dye. In the batch system, the maximum SSB-BRF uptake capacities of modified and original EAFS adsorbent (at 300 ppm dye concentration) were 80.03 and 20.99 mgg~(-1) respectively. In the batch system for different amount of slag, the maximum uptake capacities SSB-BRF of modified and original EAFS were 92.24 and 19.08 mgg~(-1) (adsorption of 300 ppm of dye concentration onto 0.1 g of slag) respectively. The Langmuir models were able to describe the adsorption equilibrium. The results indicated that modified EAFS could be employed as an excellent and low-cost sorbent for removal of reactive dye from aqueous solution.
机译:成功地进行了改性电弧炉炉渣(EAF)的利用以从水溶液中除去反应性染料(SSB-BRF)。通过BET表面积分析仪和FESEM制备修饰的EAFS并表征。 FeSEM显微照片的结果表明,改性EAF的结构具有与花样多孔赤铁矿(α-FE_2O_3)纳米建筑构成的类似结构的结构与超薄纳米薄膜组成。进行批次研究以解决各种实验参数,例如吸附量和染料浓度。在批量系中,改性和原始EAFS吸附剂(300ppm染料浓度)的最大SSB-BRF摄取能力分别为80.03和20.99mg〜(-1)。在批量系的用于不同量的渣,改性和原始EAF的最大摄取容量SSB-BRF为92.24和19.08MGG〜(-1)(吸附300ppm的染料浓度达到0.1g渣)。 Langmuir模型能够描述吸附均衡。结果表明,改性的EAF可以用作优异和低成本的吸附剂,用于从水溶液中除去反应性染料。

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