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Adsorption of methylene blue and methyl red dyes from aqueous solutions onto modified zeolites

机译:水溶液中亚甲基蓝和甲基红染料的吸附

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Zeolite, hematite, modified zeolite and commercial activated charcoal were examined for their ability to remove methylene blue (MB) and methyl red (MR) from their aqueous solutions. Modified zeolite and hematite were produced according to the Schwertmann and Cornell method while zeolite and commercial activated charcoal were obtained from S&B and Fluka AG companies, respectively. Adsorption experiments were conducted at three different adsorbent-to-solution ratios, namely 8, 16 and 24 g/L under environmental conditions and continuous stirring. Equilibrium isotherms of MB and MR were studied at different initial concentrations (from 5 × 10~(-4) to 5 × 10~(-3) g/L). MB adsorption kinetics were also studied. The maximum adsorption of MB and MR from their aqueous solutions was achieved at 24 g/L (adsorbent-to-dye solution ratio) after 1 h and was equal to 100% (MB) on modified zeolite and 99% (MR) on commercial activated charcoal, respectively. All the other materials achieved intermediate values of dye adsorption. From the applied kinetic models, the pseudosecond- order equation best described the adsorption of MB and MR. Consequently, modified zeolite showed the highest adsorption capacity for MB, while commercial activated charcoal showed the highest adsorption capacity of MR. The studied adsorbents can be used as filters to remove dyes from wastewaters.
机译:检查了沸石,赤铁矿,改性沸石和市售活性炭从水溶液中去除亚甲基蓝(MB)和甲基红(MR)的能力。改性沸石和赤铁矿是根据Schwertmann和Cornell方法生产的,而沸石和商业活性炭分别是从S&B和Fluka AG公司获得的。在环境条件和连续搅拌下,以三种不同的吸附剂与溶液的比例(即8、16和24 g / L)进行吸附实验。在不同的初始浓度(从5×10〜(-4)到5×10〜(-3)g / L)下研究了MB和MR的平衡等温线。还研究了MB的吸附动力学。 1 h后,MB和MR在水溶液中的最大吸附量为24 g / L(吸附剂与染料的溶液比),在改性沸石上为100%(MB),在商用沸石上为99%(MR)活性炭。所有其他材料均达到染料吸附的中间值。从应用的动力学模型中,伪二级方程最能描述MB和MR的吸附。因此,改性沸石对MB的吸附能力最高,而商用活性炭对MR的吸附能力最高。所研究的吸附剂可用作过滤器,以去除废水中的染料。

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