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HomeAffiliationsSouth Dakota School of Mines and Technology

Affiliations: South Dakota School of Mines and Technology

Catalytic Subcritical Hydropyrolysis of Waste Biomass into Gasoline Range Hydrocarbons

Tungal R., Shende R.V., South Dakota School of Mines and Technology, US
Catalytic aqueous phase reforming (CAPR) of the biomass has a great potential for the production of H2 and hydrocarbons. This study reports synthesis of novel nanoscale bifunctional catalytic material and its utilization in CAPR process [...]

Catalytic Subcritical Hydropyrolysis of Waste Biomass into Gasoline Range Hydrocarbons

Tungal R., Shende R.V., South Dakota School of Mines and Technology, US
Catalytic aqueous phase reforming (CAPR) of the biomass has a great potential for the production of H2 and hydrocarbons. This study reports synthesis of novel nanoscale bifunctional catalytic material and its utilization in CAPR process [...]

Photonic Curing of Silver Nanoparticle Based Inks Deposited by M3D

West J., Carter M., Smith S., Sears J., South Dakota School of Mines and Technology, US
Photonic curing is uniquely suited to rapidly sinter printed films in an assembly line or roller environment. Previous work has focused on measuring the resistivity of films sintered using photonic curing and comparing those results [...]

Formation of Ceramic Nanopowders and Composites in a Self-Sustaining Reaction Regime

Puszynski J.A., Khachatryan H.L., Maukyan K.V., Kharatyan S.L., South Dakota School of Mines and Technology, US
A combustion synthesis, also called self-propagating high-temperature synthesis, has been found to be an effective and economical production method of advanced ceramic and intermetallic compounds. This method is very suitable for the formation of nonstoichiometric [...]

Monte Carlo Simulations of Nanotube Suspensions and Composites

Foygel M., Morris R.D., Anez D., French S., Sobolev V., South Dakota School of Mines and Technology, US
A Monte Carlo simulation code has been developed aimed at finding a critical fractional volume of the nanotubes suspended in a low thermo-or electro-conductive medium. Over more than two orders of magnitude, the critical fractional [...]

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