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基于乳酸的天然低共熔溶剂的热流变行为实验研究

An Experimental Investigation on the Thermo-Rheological Behaviors of Lactic Acid-Based Natural Deep Eutectic Solvents.

作者信息

Elhamarnah Yousef, AlRasheedi Mashael, AlMarri Wadha, AlBadr Asma, AlMalki Alanoud, Mohamed Nora, Fatima Izzah, Nasser Mustafa, Qiblawey Hazim

机构信息

Department of Chemical Engineering, College of Engineering, Qatar University, Doha P.O. Box 2713, Qatar.

Gas Processing Center, College of Engineering, Qatar University, Doha P.O. Box 2713, Qatar.

出版信息

Materials (Basel). 2022 Jun 6;15(11):4027. doi: 10.3390/ma15114027.

Abstract

The rheological studies of Lactic Acid (LA)-based Natural Deep Eutectic Solvents (NADES) are provided in the present investigation. Those mechanisms were also studied in which three distinct Hydrogen Bond Acceptors (HBAs) of Choline Chloride (ChCl), Betaine (Be), and β-Alanine (β-Al), after being added to a specific Hydrogen Bond Donor (HBD) at a predefined mole-to-mole ratio of 1:1, affected the rheological properties of the prepared NADES. The alterations in the rheology-related characteristics in association with the mechanical and physical properties indicate the tolerance of the material under various operational conditions in the field and show their potential utilization as environmentally suitable and feasible solvents for industrial applications. In the present research, the viscoelastic properties of the three samples of NADES were assessed along with their shear flow properties. The backward and forward temperature change in the Apparent Viscosity (AV) pattern related to the NADES system was described by a rheogram. Furthermore, the density was determined and compared with the AV while considering the temperature-related factor. On a further note, the viscoelastic characteristics were utilized in describing and investigating the network disturbance on the level of the microstructure of NADES upon frequency sweep. A series of experiments were carried out using Thermogravimetry Analysis (TGA) to investigate the thermo-physical properties to optimize them. The rheological properties of shear flow measurements were analyzed using the Bingham model that is best suited for the AV developed with the shear rate with the dynamic yield stress of three systems. The Bingham model was used to determine the lowest stress necessary to disturb the network structure and commence the flow of LA-based NADES. Overall, the viscoelastic behavior of the LA-based NADES revealed the dissimilarity between their strength and viscosity. In addition, shear flow investigations demonstrated that LA-based NADES systems exhibit non-Newtonian properties and substantial shear-thinning effects equivalent to those of alternative IL sorbents. Assessing the rheological properties of LA-based NADES is crucial for a better understanding the key challenges associated with high viscosity. Defining the transport yield stress requirements for NADES systems under different conditions benefits their future development and potentially opens the door to more challenging applications.

摘要

本研究提供了基于乳酸(LA)的天然低共熔溶剂(NADES)的流变学研究。还研究了氯化胆碱(ChCl)、甜菜碱(Be)和β-丙氨酸(β-Al)这三种不同的氢键受体(HBA),以预定义的1:1摩尔比添加到特定的氢键供体(HBD)后,对所制备的NADES流变学性质的影响。与机械和物理性质相关的流变学特性变化表明了该材料在现场各种操作条件下的耐受性,并显示出它们作为环境适宜且可行的工业应用溶剂的潜在用途。在本研究中,评估了NADES三个样品的粘弹性性质及其剪切流动性质。通过流变图描述了与NADES系统相关的表观粘度(AV)模式中的前后温度变化。此外,在考虑温度相关因素的情况下,测定了密度并与AV进行比较。进一步而言,利用粘弹性特性来描述和研究频率扫描时NADES微观结构水平上的网络干扰。使用热重分析(TGA)进行了一系列实验,以研究热物理性质并对其进行优化。使用最适合三个系统具有剪切速率和动态屈服应力的AV的宾汉模型分析剪切流动测量的流变学性质。宾汉模型用于确定破坏网络结构并使基于LA的NADES开始流动所需的最低应力。总体而言,基于LA的NADES的粘弹性行为揭示了它们强度和粘度之间的差异。此外,剪切流动研究表明,基于LA的NADES系统表现出非牛顿性质和与其他离子液体吸附剂相当的显著剪切变稀效应。评估基于LA的NADES的流变学性质对于更好地理解与高粘度相关的关键挑战至关重要。确定不同条件下NADES系统的传输屈服应力要求有利于其未来发展,并可能为更具挑战性的应用打开大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b58/9182069/b6f9ea9ffe6a/materials-15-04027-g001.jpg

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