Kerone provides advanced direct air capture technologies engineered for high efficiency, sustainability, and reliable industrial performance. With decades of expertise in process engineering, thermal systems, and environmental solutions, Kerone develops customized systems that meet global industrial and environmental standards. These systems are optimized for energy efficiency, operational stability, and high processing accuracy.
An air contactor, a sizable apparatus based on industrial cooling towers, is where the process begins. Air is drawn into this contraption by a massive fan and travels over thin plastic surfaces that are being brushed with potassium hydroxide solution. The CO2 molecules are chemically bound by this non-toxic solution, which draws them out of the atmosphere and deposits them as a carbonate salt in the liquid solution.
After going through a number of chemical reactions to boost its concentration, purify, and compress it, the CO2 in this carbonate solution is finally given in gas form, ready for use or storage. In order to do this, salt must be extracted from solution and formed into tiny pellets using a device known as a pellet reactor, which was modified from water treatment technology. The original capture chemical to be employed in the air contactor is regenerated in this chemical reaction in addition to precipitating out the calcium carbonate pellets.
In order to release the CO2 in pure gas form, these pellets are roasted in a calciner, the third stage in our process. This process also leaves behind calcium oxide, which is fed back into the pellet reactor to restart the cycle after being rehydrated with water in the slaker.
Kerone offers Direct Air Capture systems in configurations including Solid Sorbent DAC Systems (using amine-functionalized sorbents with TVSA regeneration for modular, low-temperature applications), Liquid Solvent DAC Systems (using KOH-based systems for large-scale CO2 capture), Modular DAC Units (containerized systems for rapid deployment and scalability), Industrial-Scale DAC Plants (high-capacity systems integrated with renewable energy sources), DAC-to-Fuel Systems (integrating CO2 with green hydrogen for synthetic fuel production), and DAC with Geological Storage (integrating CO2 capture with basalt or saline aquifer injection).
Direct Air Capture’s Advantages:Carbon Removal: By directly lowering atmospheric CO2 levels, Direct Air Capture (DAC) technology successfully fights climate change.
Scalability: Direct Air Capture (DAC) systems are flexible enough to be applied to a wide range of applications since they can be deployed at different scales.
Carbon Neutrality: A circular carbon economy can be facilitated by incorporating used CO2 into a variety of activities.
Mitigating Climate Impacts: Direct Air Capture (DAC) can lessen the effects of global warming, such as extreme weather occurrences and increasing sea levels, by actively lowering CO2 levels.
How Is Kerone’s Direct Air Capture Leading?Leading the way in the development and implementation of state-of-the-art technologies that successfully and economically extract carbon dioxide from the atmosphere is Kerone. Our large-scale DAC systems are built to have a significant effect on carbon removal initiatives. We consistently improve and optimize our DAC technology with a dedication to innovation and sustainability, aiming to make it a scalable and easily accessible solution for businesses, governments, and individuals alike.
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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