Modeling and simulation of bi‐continuous jammed emulsion membrane reactors for enhanced biphasic enzymatic reactions

IF 3.5 3区 工程技术 Q2 ENGINEERING, CHEMICAL AIChE Journal Pub Date : 2024-07-29 DOI:10.1002/aic.18549
Aref Ghoreishee, Daeyeon Lee, Dimitrios Papavassiliou, Kathleen Stebe, Masoud Soroush
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Abstract

Bi‐continuous jammed emulsion (bijel) membrane reactors, integrating simultaneous reaction and separation, offer a promising avenue for enhancing membrane reactor processes. In this study, we present a comprehensive macroscopic‐scale physicochemical model for tubular bijel membrane reactors and a numerical solution strategy for solving the governing partial differential equations. The model captures the co‐continuous network of two immiscible phases stabilized by nanoparticles at the liquid–liquid interface. We present the derivation of model equations and an efficient numerical solution strategy. The model is validated with experimental results from a conventional enzymatic biphasic membrane reactor for oleuropein hydrolysis, already reported in the literature. Simulation results indicate accurate prediction of reactor behavior, highlighting the potential superiority of bijel membrane reactors over current technologies. This research contributes a valuable tool for scale‐up, design, and optimization of bijel membrane reactors, filling a critical gap in this emerging field.
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用于增强双相酶促反应的双连续堵塞乳化膜反应器的建模与模拟
集同步反应和分离于一体的双连续卡式乳化液(bijel)膜反应器,为增强膜反应器过程提供了一种前景广阔的途径。在本研究中,我们介绍了管式双连续乳化膜反应器的综合宏观尺度物理化学模型,以及解决控制偏微分方程的数值求解策略。该模型捕捉了液-液界面上由纳米颗粒稳定的两种不相溶相共连续网络。我们介绍了模型方程的推导和高效的数值求解策略。该模型与文献中已报道的传统酶法双相膜反应器水解油菜素的实验结果进行了验证。仿真结果表明,反应器的行为预测准确,凸显了双相膜反应器相对于现有技术的潜在优势。这项研究为放大、设计和优化双酚膜反应器提供了宝贵的工具,填补了这一新兴领域的重要空白。
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来源期刊
AIChE Journal
AIChE Journal 工程技术-工程:化工
CiteScore
7.10
自引率
10.80%
发文量
411
审稿时长
3.6 months
期刊介绍: The AIChE Journal is the premier research monthly in chemical engineering and related fields. This peer-reviewed and broad-based journal reports on the most important and latest technological advances in core areas of chemical engineering as well as in other relevant engineering disciplines. To keep abreast with the progressive outlook of the profession, the Journal has been expanding the scope of its editorial contents to include such fast developing areas as biotechnology, electrochemical engineering, and environmental engineering. The AIChE Journal is indeed the global communications vehicle for the world-renowned researchers to exchange top-notch research findings with one another. Subscribing to the AIChE Journal is like having immediate access to nine topical journals in the field. Articles are categorized according to the following topical areas: Biomolecular Engineering, Bioengineering, Biochemicals, Biofuels, and Food Inorganic Materials: Synthesis and Processing Particle Technology and Fluidization Process Systems Engineering Reaction Engineering, Kinetics and Catalysis Separations: Materials, Devices and Processes Soft Materials: Synthesis, Processing and Products Thermodynamics and Molecular-Scale Phenomena Transport Phenomena and Fluid Mechanics.
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