PrISMa: Process-Informed design of tailor-made Sorbent Materials for energy efficient carbon capture

PrISMa logo

The PrISMa project (https://prisma.hw.ac.uk/) aims to accelerate the transition of the energy and industrial sectors to a low-carbon economy by developing a comprehensive technology platform that enables tailored, cost-effective carbon capture solutions for diverse CO2 sources and utilization/destination scenarios. This platform offers an integrated computational and experimental screening environment for identifying economically viable Metal-Organic Frameworks (MOFs) for carbon capture applications through a suite of advanced tools and data resources. The platform connects material properties to process engineering, system-level techno-economic analyses, and life-cycle assessment simulations across multiple CO2 point sources and carbon sink options. The overall PrISMa system include a range of client-side simulation tools (for laptop/desktop and HPC) and works alongside a bespoke web service for centralised data storage, providing an online viewing platform and related API services for client-side integration. The PrISMa Platform encompasses several interconnected projects, including the MOFevaluator Project. Various open datasets, downloadable tools and online services are listed against these projects, which enable users to explore, visualize, and access comprehensive data resources.

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Creators

Susana Garcia Lopez, Berend Smit & Peter McCallum

Keywords and Subjects

PSDI-funding-call-FC1-2025
Metal-Organic Frameworks
MOF
carbon capture
process design
technoeconomics
life cycle assessment
materials discovery
DAC
Direct Air Capture