Showing posts with label Chemical Engineering Project abstract. Show all posts
Showing posts with label Chemical Engineering Project abstract. Show all posts

AMMONIA FUELLED VEHICLES DESIGN


Computer Engineering
electronics Engineering
Civil Engineering

Ammonia GreenNH3 is being used with success by developers in Canada , since it can run in spark ignited or diesel engines with minor modifications,also the only green fuel to power jet engines,and despite its toxicity is reckoned to be no more dangerous than petrol or LPG. It can be made from renewable electricity, and having half the density of petrol or diesel can be readily carried in sufficient quantities in vehicles. On combustion it has no emissions other than nitrogen and water vapour.



BIO-TECH PROJECT ON NANOTECHNOLOGICAL PROPOSAL OF ARTIFICIAL RBC

Molecular manufacturing promises precise control of matter at the atomic and molecular level, allowing the construction of micron-scale machines comprised of nanometer-scale components. Medical nanomachines will be among the earliest applications. The artificial red blood cell or "respirocyte" proposed here is a bloodborne spherical 1-micron diamondoid 1000-atm pressure vessel with active pumping able to deliver 236 times more oxygen to the tissues per unit volume than natural red cells and to manage carbonic acidity. An onboard nanocomputer and numerous chemical and pressure sensors enable complex device behaviors remotely reprogrammable by the physician via externally applied acoustic signals.



BIO-TECH PROJECT ON TREATMENT OF BRAIN TUMOR USING NANOROBOTS

The nanotechnology provides the sophisticated way to eliminate the brain tumor completely by using the nanorobots without any side effects. These nanorobots are programmed in order to perform the operation efficiently. These nanorobots are injected into the body of the patient. The moment they get injected, they form a reference point of that spot and are allowed to navigate through the blood vessels. The sensors inside the nanorobots are used to locate the tumor areas in the brain. The tumor cells are scooped by the nanorobots and return to the spot, where it actually enters the body of the patient. Receiving the signal that is produced by the nanorobots while they navigate inside the blood vessels could also sense the position of the nanorobots. This technique could be implemented in future, which assures for a complete remedy from the brain tumors.



characterization of nanomaterials

characterization of nanomaterials includes AFM, FTIR, DSC, TGA, Surface area analyzer.



DESIGN AND PERFORMANCE OF BIOTRICKLING FILTER TREATING VOLATILE POLLUTANTS IN WASTE GASES

A development, construction, set-up, put in an operation, and performance of a biotrickling filter. Choice and development of the biocatalyst and cell immobilization on the packing material. A study of the culture enrichment and culture characteristics in the reactor. Start-up procedures. Steady-state performance and dynamic behaviour of the reactor. Biodegradation of acetone, toluene and other volatile pollutants. Microbial analyses of immobilized cell population and released cells in a suspension during biodegradation processes. Characterization of gram positive and gram negative bacteria isolated from various types of bioreactors using biotyping and ribotyping



PROTOTYPE OF A DIGITAL BIOPSY DEVICE

This project was inspired by current research of one of the team members, Grant, in the Biomedical Engineering Department at Cornell. He is investigating how mechanical stresses to tissue can provide information on the tissue



Ti02 Kitset Reactor

SOLAR REACTOR