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首页> 外文期刊>ACS Omega >COSMO-RS-Based Screening of Antisolvents for the Separation of Sugars from Ionic Liquids: Experimental and Molecular Dynamic Simulations
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COSMO-RS-Based Screening of Antisolvents for the Separation of Sugars from Ionic Liquids: Experimental and Molecular Dynamic Simulations

机译:基于COSMO-RS的从离子液体中分离糖的抗溶剂筛选:实验和分子动力学模拟

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The use of ionic liquids (ILs) in the biorefinery process has been increasing for the past few decades. In biorefinery, the separation process with respect to sugars needs to be evaluated for an efficient process design. Therefore, the present work aims to investigate the separation of sugars and ILs by means of a precipitation process using an antisolvent method. For this purpose, both theoretical and experimental studies were conducted. Initially, the conductor-like screening model for real solvents model was employed to screen the suitable antisolvents for the separation of sugars from the ILs. From the screening study, dichloromethane (DCM) and 1,2-dichloroethane were found to be the better antisolvents for the separation process. With the selected antisolvents, precipitation experiments were conducted for the mixtures involving four different sugars and three ILs at different experimental conditions. The process variables such as different antisolvents, sugars, ILs, antisolvent–IL molar ratios, and temperatures were examined in terms of their effect on sugar removal and IL recovery. DCM was found to be the most suitable antisolvent in this study with 90–99% of sugar removal and 80–98% of IL recovery. Further, molecular dynamics simulations were adopted to understand the structural properties of carbohydrates with ILs and antisolvents via interaction energies, hydrogen bonding, and coordination numbers. It was observed that the interaction energy between the sugars and IL plays a critical role in the removal of sugar. Higher the interaction energy between the sugars and IL, lower is the sugar removal.
机译:在过去的几十年中,在生物精炼工艺中离子液体(ILs)的使用一直在增加。在生物精炼厂,需要对糖的分离过程进行评估,以进行有效的过程设计。因此,本工作旨在研究通过使用抗溶剂方法的沉淀过程分离糖和ILs。为此,进行了理论和实验研究。最初,采用用于真实溶剂模型的类似导体的筛选模型来筛选用于从IL分离糖的合适抗溶剂。通过筛选研究,发现二氯甲烷(DCM)和1,2-二氯乙烷是分离过程中较好的抗溶剂。使用选定的抗溶剂,在不同的实验条件下对包含四种不同糖和三种IL的混合物进行了沉淀实验。根据过程变量对糖去除和IL回收率的影响,检查了过程变量,例如不同的抗溶剂,糖,离子液体,抗溶剂-IL摩尔比和温度。在该研究中,发现DCM是最合适的抗溶剂,其糖去除率为90–99%,IL回收率为80–98%。此外,采用分子动力学模拟通过相互作用能,氢键和配位数来了解具有IL和反溶剂的碳水化合物的结构特性。观察到糖和IL之间的相互作用能在糖的去除中起关键作用。糖和IL之间的相互作用能越高,糖的去除率就越低。

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