MOFs are three dimensional crystalline structures that consist of metal ions and ligand molecules. The surface area and porosity of metal-organic frameworks is as high as 7000 m2/g.
Almost unlimited combination of metals and linkers make possible incredibly flexible control over the shape and size of pores. One of the numerous advantages of MOFs is that they have a high surface area because of their cage-like structure. It has the ability to act as a filter through which the trap or absorb certain chemical compounds.
MOF has seen increased commercial interest for gas storage and separation, purification, electrochemical, energy storage and sensing applications. The traditional means of manufacturing MOFs has always been so costly, but our continuous process for hydrothermal synthesis is compatible with such a market. Moreover, we collaborate with different research organizations in developing novel MOFs and converting batch to flow manufacturing approaches.
Kerone’s MOF-related engineering systems include MOF-Based CO2 Capture and Separation Systems (for industrial gas purification and CCS), MOF-Based Hydrogen Storage Systems (for fuel cell vehicle and energy storage applications), MOF-Based Water Harvesting Systems (for atmospheric water generation in arid regions), MOF-Integrated DAC Systems (using high-performance MOF sorbents for Direct Air Capture), MOF-Based Catalytic Reactors (for selective chemical transformations), and MOF Coating and Activation Systems (for industrial-scale MOF synthesis and activation).
Key Features of MOF
Our advanced AI, ML, and IoT technologies, this solution delivers smarter automation, real-time insights, and predictive intelligence to enhance efficiency and drive future-ready growth.
Continuous tracking of process parameters with instant adjustments.
Intelligent fault detection to prevent failures before they occur.
Dynamic tuning of operations for maximum output and efficiency.
Unified access to real-time insights and performance trends.
Smarter utilization of energy to cut costs and reduce waste.
Encrypted data flow with seamless integration across plant systems.
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