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Biosorptive dehydration of tert-butyl alcohol using a starch-based adsorbent: Characterization and thermodynamics

机译:使用淀粉基吸附剂对叔丁醇进行生物吸附脱水:表征和热力学

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Biosorptive dehydration of tert-butyl alcohol (TBA) using a specially formulated compound starch-based adsorbent was investigated. The net retention time and separation factor of TBA and water were obtained using inverse gas chromatography (IGC), which demonstrated the feasibility of this biosorptive separation process, with low temperature propitious to the process. Through orthogonal experimental design, the optimum adsorption condition was determined from different bed depths, bed temperatures and kettle temperatures. Thermal regeneration experiments showed no change in biosorption capacity after five biosorption/regeneration cycles. Field emission scanning electron microscopy (FESEM) and mercury porosimetry were used to investigate the change in surface morphology and microstructure of the biosorbent before and after adsorption. Finally, the thermodynamic parameters ΔH _s and ΔG _s were determined, which indicated that the process occurred by physisorption and was spontaneous and exothermic. The results indicated that the biosorbent can be used as an effective low-cost sorbent to dehydrate TBA.
机译:研究了使用特殊配制的复合淀粉基吸附剂对叔丁醇(TBA)的生物吸附脱水作用。使用反向气相色谱法(IGC)获得了TBA和水的净保留时间和分离因子,证明了该生物吸附分离方法的可行性,而低温有利于该过程。通过正交实验设计,从不同的床层深度,床层温度和釜温确定最佳吸附条件。热再生实验表明,在五个生物吸附/再生循环后,生物吸附能力没有变化。利用场发射扫描电子显微镜(FESEM)和水银孔率法研究了吸附前后生物吸附剂的表面形态和微观结构的变化。最后,确定了热力学参数ΔH_s和ΔG_s,这表明该过程是通过物理吸附发生的,并且是自发放热的。结果表明,该生物吸附剂可以用作使TBA脱水的有效低成本吸附剂。

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