Bötschi Stefan, Rajagopalan Ashwin Kumar, Morari Manfred, Mazzotti Marco
Institute of Process Engineering , ETH Zurich , 8092 Zurich , Switzerland.
Department of Electrical and Systems Engineering , University of Pennsylvania , Philadelphia 19104 , United States.
J Phys Chem Lett. 2018 Aug 2;9(15):4210-4214. doi: 10.1021/acs.jpclett.8b01998. Epub 2018 Jul 13.
The solute concentration in crystallization processes is generally estimated by observing properties of the liquid phase. Here, a novel method for online estimation of the change in the solute concentration caused by seeded batch crystallization or dissolution of a population of crystals in suspension is presented. The method is based on multiprojection imaging to track variations in the total solid volume of the population, thus enabling inference of the solute concentration through the mass conservation constraint. The solute concentration estimates obtained in this way are validated by using them to measure the solubilities of β l-glutamic acid and vanillin in water within certain temperature ranges and comparing them to literature data. The presented method shows promise in estimating the solute concentration reliably under circumstances where employing conventional techniques is challenging.
结晶过程中的溶质浓度通常通过观察液相的性质来估算。在此,提出了一种用于在线估算由晶种分批结晶或悬浮液中晶体群体的溶解所引起的溶质浓度变化的新方法。该方法基于多投影成像来跟踪晶体群体总固体体积的变化,从而能够通过质量守恒约束推断溶质浓度。通过将以此方式获得的溶质浓度估算值用于测量β-L-谷氨酸和香草醛在特定温度范围内在水中的溶解度,并与文献数据进行比较,对这些估算值进行了验证。所提出的方法在采用传统技术具有挑战性的情况下可靠地估算溶质浓度方面显示出前景。