2025 Impact Scholarship AWARD WINNER
2025 Impact Scholarship AWARD WINNER
Blood bag capacity (450ml): 12
Cold life: 8.5 hours (simulated)
Our blood transport system is designed to deliver blood to war zones, disaster zones, emergency point of care, and isolated locations in extreme environments and terrains, by road or aerial transport. Current products are insufficient at delivering blood in high temperature en
Blood bag capacity (450ml): 12
Cold life: 8.5 hours (simulated)
Our blood transport system is designed to deliver blood to war zones, disaster zones, emergency point of care, and isolated locations in extreme environments and terrains, by road or aerial transport. Current products are insufficient at delivering blood in high temperature environments over vast distances, which damage blood provisions and cause wastage, with industry leading products maintaining blood integrity for 4-5 hours at moderate temperatures. Our solution addresses this by using advanced fluid agitation and chemical cooling mechanisms, increasing transport hold-time, and reducing stagnation and bacterial growth, particularly in hot climates.
Currently in R&D
Reliable cold-chain transport is critical for vaccines and temperature-sensitive medicines, especially in remote or high-temperature regions where exposure to heat can rapidly reduce product effectiveness and safety. Existing transport containers often rely on passive insulation or conventional refrigeration systems that s
Currently in R&D
Reliable cold-chain transport is critical for vaccines and temperature-sensitive medicines, especially in remote or high-temperature regions where exposure to heat can rapidly reduce product effectiveness and safety. Existing transport containers often rely on passive insulation or conventional refrigeration systems that struggle to maintain stable conditions over long distances. Our solution, currently in the R&D stage, combines novel chemical cooling systems and a fluid agitation mechanism, providing longer-lasting, energy-efficient, and more uniform cooling without depending heavily on external power sources. This will improve temperature stability and reduce medicine spoilage and waste in challenging environments.