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MemSic Inc memsic simulation tool
Memsic Simulation Tool, supplied by MemSic Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/memsic+simulation+tool/memsic+simulation+tool/10__1021_slash_acs__energyfuels__1c03528-457-19-19
Average 90 stars, based on 1 article reviews
memsic simulation tool - by Bioz Stars, 2026-09
90/100 stars

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Permeability:

Article Title: Modeling and simulation for design and analysis of membrane-based separation processes
Article Snippet: Accurate and reliable mathematical models play a key role in membrane system design.. Process simulators have been proven to be successful in modeling, simulate, and optimize various industrial processes.. Most of the commercial simulators can be used to solve mathematical models based on membrane applications.

Article Title: Synthesis and optimization of membrane cascade for gas separation via mixed‐integer nonlinear programming
Article Snippet: .. Bounaceur R, Berger E, Pfister M, Ramirez Santos AA, Favre E. Rigorous variable permeability modelling and process simulation for the design of polymeric membrane gas separation units: MEMSIC simulation tool. ..

Article Title: Comparative performance of commercial polymeric membranes in the recovery of industrial hydrogen waste gas streams
Article Snippet: The application of membrane separation processes to industrial hydrogen-rich waste gases promotes the efficient recovery of this clean fuel.. The first step to address and overcome this waste of resources is to assess the real performance of commercially available polymeric membranes for hydrogen separation in terms of hydrogen purity that meets the quality standards to be used in hydrogen-based applications.. Therefore, this work makes a comparison of the performance of commercial flat hydrogen-selective membranes based on non-porous polymeric materials through the experimental assessment in a lab-scale set up that contains a gas permeation cell with the aim of recovering hydrogen from the most suitable multicomponent waste gaseous streams.

Article Title: Membrane Separation Process Design and Intensification
Article Snippet: Membrane separation has gained significant interest from the chemical industry due to their compactness, energy efficiency, and modularity.. Recent trends in process intensification also emphasizes the importance of a more widespread adoption of membrane-based processes for significant cost savings and sustainable operation.. We present a prototype software framework for the automated design, optimization, intensification, benchmarking, and technoeconomic analysis of various types of membrane systems, including gas separation, pervaporation, and vapor permeation, while covering wide ranges of their operations.

Article Title: Mixed matrix membranes of polyurethane with nickel oxide nanoparticles for CO2 gas separation
Article Snippet: We developed highly selective polyurethane (PU) membranes with incorporated NiO nanoparticles for gas-phase carbon dioxide separation.. PU was synthesized with polytetramethylene glycol and isophoronediisocyanate, and 1,4-butandiamine/1,4-butandiol as the chain extender (1:3:2 molar ratio).. Mixed matrix membranes (MMMs) composed of PU and NiO nanoparticles were fabricated using the solution casting method.

Article Title: Production of Purified H2, Heat, and Biochar from Wood: Comparison between Gasification and Autothermal Pyrolysis Based on Advanced Process Modeling
Article Snippet: Biomass gasification is an interesting route for renewable hydrogen production, but it is still hampered by technical, environmental, and economic issues.. A first key step toward its development is the quantification of mass and energy balances of the integrated process.. This work compares different processes to produce purified H2 from wood and also other products (heat, biochar) at medium-scale power (20 MW of biomass power inlet that corresponds to 3.7 tdry/h).

Membrane:

Article Title: Modeling and simulation for design and analysis of membrane-based separation processes
Article Snippet: Accurate and reliable mathematical models play a key role in membrane system design.. Process simulators have been proven to be successful in modeling, simulate, and optimize various industrial processes.. Most of the commercial simulators can be used to solve mathematical models based on membrane applications.

Article Title: Synthesis and optimization of membrane cascade for gas separation via mixed‐integer nonlinear programming
Article Snippet: .. Bounaceur R, Berger E, Pfister M, Ramirez Santos AA, Favre E. Rigorous variable permeability modelling and process simulation for the design of polymeric membrane gas separation units: MEMSIC simulation tool. ..

Article Title: Comparative performance of commercial polymeric membranes in the recovery of industrial hydrogen waste gas streams
Article Snippet: The application of membrane separation processes to industrial hydrogen-rich waste gases promotes the efficient recovery of this clean fuel.. The first step to address and overcome this waste of resources is to assess the real performance of commercially available polymeric membranes for hydrogen separation in terms of hydrogen purity that meets the quality standards to be used in hydrogen-based applications.. Therefore, this work makes a comparison of the performance of commercial flat hydrogen-selective membranes based on non-porous polymeric materials through the experimental assessment in a lab-scale set up that contains a gas permeation cell with the aim of recovering hydrogen from the most suitable multicomponent waste gaseous streams.

Article Title: Membrane Separation Process Design and Intensification
Article Snippet: Membrane separation has gained significant interest from the chemical industry due to their compactness, energy efficiency, and modularity.. Recent trends in process intensification also emphasizes the importance of a more widespread adoption of membrane-based processes for significant cost savings and sustainable operation.. We present a prototype software framework for the automated design, optimization, intensification, benchmarking, and technoeconomic analysis of various types of membrane systems, including gas separation, pervaporation, and vapor permeation, while covering wide ranges of their operations.

Article Title: Mixed matrix membranes of polyurethane with nickel oxide nanoparticles for CO2 gas separation
Article Snippet: We developed highly selective polyurethane (PU) membranes with incorporated NiO nanoparticles for gas-phase carbon dioxide separation.. PU was synthesized with polytetramethylene glycol and isophoronediisocyanate, and 1,4-butandiamine/1,4-butandiol as the chain extender (1:3:2 molar ratio).. Mixed matrix membranes (MMMs) composed of PU and NiO nanoparticles were fabricated using the solution casting method.

Article Title: Production of Purified H2, Heat, and Biochar from Wood: Comparison between Gasification and Autothermal Pyrolysis Based on Advanced Process Modeling
Article Snippet: Biomass gasification is an interesting route for renewable hydrogen production, but it is still hampered by technical, environmental, and economic issues.. A first key step toward its development is the quantification of mass and energy balances of the integrated process.. This work compares different processes to produce purified H2 from wood and also other products (heat, biochar) at medium-scale power (20 MW of biomass power inlet that corresponds to 3.7 tdry/h).



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MemSic Inc memsic simulation tool
Memsic Simulation Tool, supplied by MemSic Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/memsic+simulation+tool/memsic+simulation+tool/10__1021_slash_acs__energyfuels__1c03528-457-19-19
Average 90 stars, based on 1 article reviews
memsic simulation tool - by Bioz Stars, 2026-09
90/100 stars
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