Quantification of photocatalytic oxygenation of human blood
Aryasomayajula Subrahmanyam, Paul Ramesh Thangaraj, Chandrasekhar Kanuru, Albert Jayakumar, Jayashree Gopal
Abstract
Aryasomayajula Subrahmanyam, Paul Ramesh Thangaraj, Chandrasekhar Kanuru, Albert Jayakumar, Jayashree Gopal
Abstract
Photocatalytic oxygenation of human blood is an emerging concept based on the principle of photocatalytic splitting of water into oxygen and hydrogen. This communication reports: (i) a design of a photocatalytic cell (PC) that separates the blood from UV (incident) radiation source, (ii) a pH, temperature and flow controlled circuit designed for quantifying the oxygenation of human blood by photocatalysis and (iii) measuring the current efficacy of ITO/TiO2 nano thin films in oxygenating human blood in a dynamic circuit in real time. The average increase in oxygen saturation was around 5% above baseline compared to control (p<0.0005). We believe this is one of the first attempts to quantify photocatalytic oxygenation of human blood under controlled conditions.
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Photocatalytic oxygenation of human blood is an emerging concept based on the principle of photocatalytic splitting of water into oxygen and hydrogen. This communication reports: (i) a design of a photocatalytic cell (PC) that separates the blood from UV (incident) radiation source, (ii) a pH, temperature and flow controlled circuit designed for quantifying the oxygenation of human blood by photocatalysis and (iii) measuring the current efficacy of ITO/TiO2 nano thin films in oxygenating human blood in a dynamic circuit in real time. The average increase in oxygen saturation was around 5% above baseline compared to control (p<0.0005). We believe this is one of the first attempts to quantify photocatalytic oxygenation of human blood under controlled conditions.
Key concepts: Oxygenation, Blood oxygenation, Photocatalysis, Environmental science, Human blood, Materials science, Biochemical engineering, Process engineering