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About the Opportunity Job Summary: The Postdoctoral Research Associate will lead independent, cutting-edge research within the Barecka Lab, focused on the electrochemical conversion of carbon
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live cells to convert carbon dioxide and other feedstock chemicals into bespoke complex chemicals. In a collaborative project, these cells will be interfaced with light harvesting semiconductor systems
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look like; direct air capture (DAC) has high uncertainty around cost and feasibility; and for carbonaceous fuels there is competition between compensating fossil emissions with carbon dioxide removal
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removal and texturization of plant protein using supercritical carbon dioxide in the department of Food Science at Cornell University. This individual will be required to investigate different strategies
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protein using supercritical carbon dioxide in the department of Food Science at Cornell University. This individual will be required to investigate different strategies to generate novel products and
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, focused on the electrochemical conversion of carbon dioxide to ethanol. Supported by an externally funded grant, this role offers a unique opportunity to contribute to the development of transformative
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–performance relationships. • Evaluate the influence of coating composition and MOF incorporation on the permeation of oxygen, carbon dioxide, and nitrogen. • Validate the application of the developed coatings
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, numerical simulators with coupled physics (flow/reactive/geo-mechanics/thermal) have been developed and often applied to predict the long-term fate of the injected carbon dioxide to ensure its secure
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entitled: “Metal-organic frameworks for efficient carbon dioxide capture from water”. The project aims to develop functional metal-organic framework (MOF) materials and MOF-based composites with controlled
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National Energy Technology Laboratory (NETL) | Pittsburgh, Pennsylvania | United States | about 12 hours ago
injection of water and/or nonaqueous fluids such as rich natural gas and carbon dioxide with or without additives such as surfactants. Improving oil recovery can promote affordable, reliable, and secure