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Characterization of Biomass Adsorbent ZSG-1 through Isopropanol and Water Azeotrope Dehydration

机译:异丙醇和水共沸物脱水表征生物质吸附剂ZSG-1

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摘要

In this work, a compound starch-based adsorbent material known as ZSG-1, which was formulated in a previous work for high-capacity, low-cost ethanol dehydration, was thermodynamically assessed through dehydration of azeotropic aqueous isopropanol. Comparisons of the retention times, heats of adsorption (Delta H-s), and Gibbs free energies (Delta G) of isopropanol and water confirmed the feasibility of using ZSG-1 in this dehydration process. Retention data were obtained by inverse gas chromatography and revealed the heat of adsorption Delta H-s to be -55.73 kJ/mol, demonstrating that water entrapment in ZSG-1 is an exothermic physisorption process. After SEM observation, the inner micrographic pore size and surface area of ZSG-1 were calculated and estimated using an approach that combines nitrogen adsorption and mercury porosimetry. Through tests in a fixed-bed column under conditions determined by orthogonal experiment design, the optimal adsorption conditions were determined from breakthrough curves at different bed depths, bed temperatures, and kettle temperatures.
机译:在这项工作中,通过共沸含水异丙醇的脱水进行了热力学评估,它是在以前的工作中配制用于高容量,低成本乙醇脱水的复合淀粉基吸附材料ZSG-1。异丙醇和水的保留时间,吸附热(ΔH-s)和吉布斯自由能(ΔG)的比较证实了在该脱水过程中使用ZSG-1的可行性。通过逆气相色谱获得保留数据,并揭示出吸附Delta H-s的热量为-55.73 kJ / mol,表明ZSG-1中的水分截留是放热的物理吸附过程。在SEM观察之后,使用结合了氮吸附和汞孔隙率法的方法来计算和估计ZSG-1的内部显微照相孔径和表面积。通过在正交实验设计确定的条件下在固定床色谱柱中进行测试,从不同床深度,床温和釜温下的穿透曲线确定了最佳吸附条件。

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