Research Article110.1016/j.compchemeng.2025.109215Caffeine, riboflavin and curcumin amended clays for PFAS bindingMay 29, 2025Computers & chemical engineeringXenophon Xenophontos + 6 more +6CiteListenSave
Research Article510.1016/j.compchemeng.2022.108032Natural gas maximal load delivery for multi-contingency analysisOct 18, 2022Computers & Chemical EngineeringByron Tasseff + 4 more +4CiteListenSave
Research Article1910.1016/j.compchemeng.2017.01.027Design of an embedded inverse-feedforward biomolecular tracking controller for enzymatic reaction processesJan 17, 2017Computers & Chemical EngineeringMathias Foo + 3 more +3Feedback control is widely used in chemical engineering to improve the performance and robustness of chemical processes. Feedback controllers require a 'subtractor' that is able to compute the error between the process output and the reference signal. In the case of embedded biomolecular control circuits, subtractors designed using standard chemical reaction network theory can only realise one-sided subtraction, rendering standard controller design approaches inadequate. Here, we show how a biomolecular controller that allows tracking of required changes in the outputs of enzymatic reaction processes can be designed and implemented within the framework of chemical reaction network theory. The controller architecture employs an inversion-based feedforward controller that compensates for the limitations of the one-sided subtractor that generates the error signals for a feedback controller. The proposed approach requires significantly fewer chemical reactions to implement than alternative designs, and should have wide applicability throughout the fields of synthetic biology and biological engineering.Read moreCiteListenSave
Research Article110.1016/0098-1354(95)00160-4Parametric study of separation network synthesis: extreme properties of optimal structuresJun 11, 1995Computers & Chemical EngineeringZ KovacsCiteListenSave
Research Article110.1016/0098-1354(93)85043-lDynamic simulation and control of gas turbines and compressor systemsJan 01, 1993Computers & Chemical EngineeringG HeyenCiteListenSave