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-containing aqueous media, as well as associated methods of corrosion control via the use of surfactant-based chemistries. The study builds on successful work at the University of Leeds where we have developed
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partitioning and inhibition mechanism in CO2-containing aqueous media. The study builds on successful work at the University of Leeds where we have developed methods to understand role and performance
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of cement or clay at depths reaching hundreds of meters into rock. Preserving these containers for thousands of years requires a clear understanding of corrosion rates, corrosion product formation, and gas
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overall porosity increase and volume expansion have only been observed in unconfined cases, where reaction rates are appreciable. This PhD project will work alongside leading teams within the University
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innovation challenge is the unknown effect of ammonia on the internal steel surfaces of engines, especially corrosion by ammonia oxidation products (NOx). This project will systematically examine the
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View All Vacancies Are you an excellent researcher in the field of Corrosion, Electrochemistry, Additive Manufacturing and/or Material Science/Degradation? Are you interested in technological
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View All Vacancies Are you an excellent researcher in the field of Corrosion, Electrochemistry, Cement Chemistry/Carbonation and/or Material Science/Degradation? Are you interested in technological
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View All Vacancies Are you an excellent researcher in the field of Corrosion, Electrochemistry, Cement Chemistry/Carbonation and/or Material Science/Degradation? Are you interested in technological