1 - 7 |
Bacteria microencapsulation in PLGA microdevices by supercritical emulsion extraction Della Porta G, Castaldo F, Scognamiglio M, Paciello L, Parascandola P, Reverchon E |
8 - 15 |
Supercritical carbon dioxide inactivation of Escherichia coli and Saccharomyces cerevisiae in different growth stages Ortuno C, Martinez-Pastor MT, Mulet A, Benedito J |
16 - 24 |
Numerical investigations of liquid jet breakup in pressurized carbon dioxide: Conditions of two-phase flow in Supercritical Antisolvent Process Erriguible A, Vincent S, Subra-Paternault P |
25 - 30 |
High-pressure vapor-liquid equilibria of methanol plus propylene: Experimental and modeling with SAFT Banaei M, Florusse LJ, Raeissi S, Peters CJ |
31 - 39 |
Extracts from the leaves of Baccharis dracunculifolia obtained by a combination of extraction processes with supercritical CO2, ethanol and water Martinez-Correa HA, Cabral FA, Magalhaes PM, Queiroga CL, Godoy AT, Sanchez-Camargo AP, Paviani LC |
40 - 45 |
Experimental determination and correlation of meloxicam sodium salt solubility in supercritical carbon dioxide de Sousa HC, Costa MS, Coimbra P, Matias AA, Duarte CMM |
46 - 51 |
Neutron radiography on tubular flow reactor for hydrothermal synthesis: In situ monitoring of mixing behavior of supercritical water and room-temperature water Takami S, Sugioka K, Tsukada T, Adschiri T, Sugimoto K, Takenaka N, Saito Y |
52 - 58 |
In situ FTIR investigation of the solubility and swelling of model epoxides in supercritical CO2 Foltran S, Cloutet E, Cramail H, Tassaing T |
59 - 68 |
Phase behavior of phytosterols and cholesterol in carbon dioxide-expanded ethanol Temelli F, Cordoba A, Elizondo E, Cano-Sarabia M, Veciana J, Ventosa N |
69 - 80 |
Coprecipitation on slurry to prepare drug-silica-polymer formulations by compressed antisolvent Subra-Paternault P, Vrel D, Roy C |
81 - 91 |
Modeling gas solubility in ionic liquids with the SAFT-gamma group contribution method Ashrafmansouri SS, Raeissi S |
92 - 98 |
Polymer and ampicillin co-precipitation by supercritical antisolvent process Montes A, Gordillo MD, Pereyra C, de la Ossa EJM |
99 - 104 |
Preparation of few-layer and single-layer graphene by exfoliation of expandable graphite in supercritical N,N-dimethylformamide Liu CQ, Hu GX, Gao HY |
105 - 114 |
Modeling of ternary solubilities of solids in supercritical carbon dioxide in the presence of cosolvents or cosolutes Reddy SN, Madras G |
115 - 132 |
Experimental study of the isochoric heat capacity of isobutanol in the critical and supercritical regions Radzhabova LM, Stepanov GV, Abdulagatov IM, Shakhbanov KA |
133 - 149 |
Fluid properties needed in supercritical transesterification of triglyceride feedstocks to biodiesel fuels for efficient and clean combustion - A review Anitescu G, Bruno TJ |
150 - 154 |
Viscosity of water in the region around the critical point Liu XY, He MG, Zhang Y |
155 - 160 |
Production of biodegradable porous scaffolds impregnated with indomethacin in supercritical CO2 Cabezas LI, Fernandez V, Mazarro R, Gracia I, de Lucas A, Rodriguez JF |
161 - 168 |
Supercritical fluid extraction of hernandulcin from Lippia dulcis Trev. de Oliveira PF, Machado RAF, Bolzan A, Barth D |
169 - 179 |
Preparation and characterization of raloxifene nanoparticles using Rapid Expansion of Supercritical Solution (RESS) Keshavarz A, Karimi-Sabet J, Fattahi A, Golzary A, Rafiee-Tehrani M, Dorkoosh FA |
180 - 186 |
Structural behavior of Candida antarctica lipase B in water and supercritical carbon dioxide: A molecular dynamic simulation study Housaindokht MR, Bozorgmehr MR, Monhemi H |
187 - 198 |
Mechanism of extensional stress-induced cell formation in polymeric foaming processes with the presence of nucleating agents Leung SN, Wong A, Wang LC, Park CB |
199 - 207 |
Selective oxidation of benzyl alcohol in dense CO2: Insight by phase behavior modeling Beier MJ, Grunwaldt JD, Tsivintzelis I, Jensen AD, Kontogeorgis GM, Baiker A |