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Methyl Orange adsorption by reuse of a waste adsorbent poly(AAc/AM/SH)-MB superabsorbent hydrogel: matrix effects, adsorption thermodynamic and kinetics studies

机译:废吸附剂聚(AAc / AM / SH)-MB超吸收性水凝胶的再利用对甲基橙的吸附:基质效应,吸附热力学和动力学研究

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摘要

The traditional method for the treatment of used adsorbents is usually recovery for recycling or direct discarding them. In the present study, a more potential and economical method is described to reutilize a waste adsorbent. Poly(AAc/AM/SH) SAHs have proved to be a good adsorbent for cationic MB dye, and after adsorption, the SAHs were recovered for recycling. In this work, the waste MB dye loaded poly(AAc/AM/SH) SAHs were not recovered but directly applied to adsorb an anionic MO dye from another waste solution. The poly(AAc/AM/SH) SAHs after the MB dye adsorption were stable and suitable for MO dye adsorption for altered surface structures within a wide pH range. The various factors affecting the MO dye adsorption, including pH, contact time, ionic strength, initial concentration of the MO dye, and temperature, were systematically investigated. The equilibrium adsorption data fitted very well to the Langmuir adsorption isotherm and the maximum MO dye adsorption capacity reached to a high of 134mg/g at 30 degrees C. The thermodynamic parameters such as Delta H-0, Delta G(0), and Delta S-0 for the MO dye adsorption processes onto the SAHs were also evaluated, and the obtained negative Delta G(0) and Delta H-0 values confirmed that the MO adsorption process was spontaneous as well as exothermic. The kinetic studies indicate that the MO dye adsorption process was well consistent with the pseudo-second-order kinetic model. The desorption studies showed that the regeneration of the poly(AAc/AM/SH)-MB SAHs adsorbent can be easily achieved.
机译:处理用过的吸附剂的传统方法通常是回收再利用或直接丢弃。在本研究中,描述了一种更具有潜力和经济性的方法来重新利用废物吸附剂。聚(AAc / AM / SH)SAHs被证明是阳离子MB染料的良好吸附剂,吸附后,SAHs被回收用于循环利用。在这项工作中,没有回收负载废MB染料的聚(AAc / AM / SH)SAH,而是将其直接应用于从另一种废溶液中吸附阴离子MO染料。 MB染料吸附后的聚(AAc / AM / SH)SAH稳定,适合在宽pH范围内改变表面结构的MO染料吸附。系统地研究了影响MO染料吸附的各种因素,包括pH,接触时间,离子强度,MO染料的初始浓度和温度。平衡吸附数据非常适合Langmuir吸附等温线,最大的MO染料吸附容量在30摄氏度时达到134mg / g的高位。热力学参数如Delta H-0,Delta G(0)和Delta还评估了SA上MO染料吸附过程的S-0,获得的负Delta G(0)和Delta H-0值证实了MO吸附过程是自发的并且是放热的。动力学研究表明,MO染料的吸附过程与拟二级动力学模型很好地吻合。解吸研究表明,聚(AAc / AM / SH)-MB SAHs吸附剂的再生很容易实现。

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