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首页> 外文期刊>Chemical engineering journal >Removal of tetracycline by NaOH-activated carbon produced from macadamia nut shells: Kinetic and equilibrium studies
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Removal of tetracycline by NaOH-activated carbon produced from macadamia nut shells: Kinetic and equilibrium studies

机译:澳洲坚果壳产生的NaOH活性炭去除四环素的动力学和平衡研究

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摘要

A NaOH-activated carbon was prepared from macadamia nut shell using the impregnation ratio of 3:1 (NaOH:char) (wt:wt). The obtained material (AC_M) was characterized by several techniques and methodologies such as, N2 adsorption-desorption isotherms, SEM, FT-IR, Boehm titration, and pH_(pzc). The results demonstrated that the AC_M is composed mainly of micropores (78.2%), presenting BET surface area of 1524 m~2 g~(-1). Through the SEM and FT-IR analysis it could be observed that significant changes occurred on the material surface after the activation procedure. According to Boehm titration, the AC_M has on its surface a majority of basic groups which is in agreement with the obtained pH_(pzc) value of 8.74. The AC_M was applied for tetracycline (TC) removal in order to assess its potential as an adsorbent. Thus, adsorption studies were carried out and several kinetic and isotherm models were employed. The isotherm model which best fitted to experimental data was Temkin, while the best fitted kinetic model was Elovich. ACM showed maximum monolayer adsorption capacity (Q_m) of 455.33 mg g~(-1). The intraparticle diffusion and film diffusion mechanisms were studied by the equations of Weber & Morris and Boyd, respectively. According to the results, the limiting step of the adsorption of TC onto AC_M is influenced by intraparticle diffusion and by film diffusion.
机译:从澳洲坚果壳中以3:1(NaOH:炭)(wt:wt)的浸渍比制备NaOH活性炭。通过多种技术和方法对获得的材料(AC_M)进行了表征,例如N2吸附-解吸等温线,SEM,FT-IR,Boehm滴定和pH_(pzc)。结果表明,AC_M主要由微孔组成(78.2%),BET表面积为1524 m〜2 g〜(-1)。通过SEM和FT-IR分析,可以观察到活化过程后材料表面发生了显着变化。根据Boehm滴定法,AC_M在其表面上具有大部分碱性基团,其与获得的8.74的pH_(pzc)值一致。 AC_M用于去除四环素(TC),以评估其作为吸附剂的潜力。因此,进行了吸附研究,并采用了几种动力学和等温线模型。最适合实验数据的等温线模型是Temkin,而最适合动力学模型是Elovich。 ACM的最大单层吸附容量(Q_m)为455.33 mg g〜(-1)。分别通过韦伯和莫里斯方程和博伊德方程研究了颗粒内扩散和膜扩散机制。根据结果​​,颗粒内部扩散和薄膜扩散会影响TC在AC_M上吸附的限制步骤。

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