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About me
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This is an example of a news post.
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We seek to understand and optimise the design of (un)structured DAC sorbents through multiphysics CFD simulations
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This research is aimed at modelling and controlling DAC systems under varying atmospheric conditions and intermittent power supply.
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This thesis presents a novel dual sorbent system that combines solid sorbent and liquid solvent techniques to capture and convert CO₂ into syngas.
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The feasibility of moisture swing DAC for greenhouse CO₂ enrichment was assessed through by investigating key sorbent parameters and the effect of climate conditions, sensitivity analysis, and a preliminary techno-economic assessment.
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In this internship project, a two-dimensional numerical model for the SIENNA reactor is developed, tested, and used to gain insights on the membrane reactor and the interplay between mass transfer and heat conduction processes.
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This thesis addresses the challenges in modeling adsorption and desorption processes in solid-sorbent Direct Air Capture, focusing on the complexities introduced by the porous structures of sorbent materials and the effects of humidity.
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This thesis focuses on the design and economic evaluation of a novel, cost-effective fermentation gas purification system specifically for small-scale craft breweries.
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We are developing a set-up and analysis for measurement of CO₂ and H₂O uptake kinetics on DAC sorbents using a frequency response method.
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This thesis explored the integration of solid sorbent direct air capture (DAC) with two types of concentrated solar power, to create a renewable and scalable approach for carbon dioxide removal.
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In this project, a series of monolith geometries is designed to investigate how structural variations influence CO₂ adsorption performance in DAC applications.
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This project is focused on the modeling and simulation of advanced absorption technologies for CO₂ capture, with the objective of achieving process intensification and absorber size reduction.
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In this project, we develop new integrated process in which solar radiation is captured as heat, and used directly to filter CO₂ from the air.
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