1 - 13 |
A review of laboratory-scale research on lipid conversion to biodiesel with supercritical methanol (2001-2009) Sawangkeaw R, Bunyakiat K, Ngamprasertsith S |
14 - 22 |
Effect of menthol as solid cosolvent on the solubility enhancement of clozapine and lamorigine in supercritical CO2 Hosseini MH, Alizadeh N, Khanchi AR |
23 - 31 |
Phase equilibrium data and thermodynamic modeling of the system propane plus NMP plus methanol at high pressures Charin RM, Corazza ML, Ndiaye PM, Mazutti MA, Oliveira JV |
32 - 36 |
High-pressure phase equilibria for the binary system carbon dioxide plus benzyl alcohol Liao S, Hou YC, Li SY, Chen XT, Wu WZ |
37 - 42 |
The solubility and solubility modelling of budesonide in pure and modified subcritical water solutions Carr AG, Branch A, Mammucari R, Foster NR |
43 - 48 |
Ternary solubility of mono- and di-tert-butyl ethers of glycerol in supercritical carbon dioxide Paniri G, Ghaziaskar HS, Rezayat M |
49 - 55 |
High-pressure gas-liquid equilibrium measurements by means of a double-chamber recirculation apparatus. Data on the system carbon dioxide-limonene at 50 and 70 degrees C Gironi F, Maschietti M |
56 - 61 |
Analysis of volume expansion mechanism of CO2-acetate systems at 40 degrees C Aida T, Aizawa T, Kanakubo M, Nanjo H |
62 - 70 |
Solubility of carbon dioxide in pentaerythritol ester oils. New data and modeling using the PC-SAFT model Fandino O, Lopez ER, Lugo L, Garcia J, Fernandez J |
71 - 76 |
Dependence of volume expansion on alkyl chain length and the existence of branched methyl group of CO2-expanded ketone systems at 40 degrees C Aida T, Aizawa T, Kanakubo M, Nanjo H |
77 - 85 |
Mathematical modelling and in situ determination of pH in complex aqueous solutions during high-pressure carbon dioxide treatment Garcia-Gonzalez L, Teichert H, Geeraerd AH, Elst K, Van Ginneken L, Van Impe JF, Vogel RF, Devlieghere F |
86 - 95 |
Diffusion coefficients of L-menthone and L-carvone in mixtures of carbon dioxide and ethanol Dong XY, Su BG, Xing HB, Yang YW, Ren QL |
96 - 106 |
Development of an improved falling ball viscometer for high-pressure measurements with supercritical CO2 Calvignac B, Rodier E, Letourneau JJ, Vitoux P, Aymonier C, Fages J |
107 - 115 |
Computational-fluid-dynamics study of a Kenics static mixer as a heat exchanger for supercritical carbon dioxide Lisboa PF, Fernandes J, Simoes PC, Mota JPB, Saatdjian E |
116 - 121 |
Numerical investigation of cooling heat transfer to supercritical CO2 in a horizontal circular tube Du ZX, Lin WS, Gu AZ |
122 - 127 |
Purification of hydrocarbons from aromatic sulfur compounds by supercritical carbon dioxide extraction Hiyoshi N, Murakami Y, Yamaguchi A, Sato O, Rode CV, Shirai M |
128 - 131 |
Countercurrent supercritical fluid extraction of grape-spirit Da Porto C, Decorti D |
132 - 141 |
Bioactive extracts of orange (Citrus sinensis L. Osbeck) pomace obtained by SFE and low pressure techniques: Mathematical modeling and extract composition Benelli P, Riehl CAS, Smania A, Smania EFA, Ferreira SRS |
142 - 148 |
Optimization of supercritical extraction of nimbin from neem seeds in presence of methanol as co-solvent Zahedi G, Elkamel A, Lohi A, Hatami T |
149 - 155 |
Recovery of gamma-oryzanol from rice bran oil byproduct using supercritical fluid extraction Jesus SP, Grimaldi R, Hense H |
156 - 160 |
Effect of ethanol content on supercritical carbon dioxide extraction of caffeine from tea stalk and fiber wastes Icen H, Guru M |
161 - 168 |
Supercritical fluid extraction combined with dispersive liquid-liquid microextraction as a sensitive and efficient sample preparation method for determination of organic compounds in solid samples Rezaee M, Yamini Y, Moradi M, Saleh A, Faraji M, Naeeni MH |
169 - 175 |
Supercritical fluids extraction and anti-solvent purification of carotenoids from microalgae and associated bioactivity Liau BC, Shen CT, Liang FP, Hong SE, Hsu SL, Jong TT, Chang CMJ |
176 - 183 |
Effects of differential permeability on packed bed supercritical extractors: A theoretical insight Fiori L, Costa P |
184 - 191 |
Processing cherries (Prunus avium) using supercritical fluid technology. Part 1: Recovery of extract fractions rich in bioactive compounds Serra AT, Seabra IJ, Braga MEM, Bronze MR, de Sousa HC, Duarte CMM |
192 - 199 |
Supercritical carbon dioxide extraction of oil from Mexican chia seed (Salvia hispanica L.): Characterization and process optimization Ixtaina VY, Vega A, Nolasco SM, Tomas MC, Gimeno M, Barzana E, Tecante A |
200 - 207 |
Supercritical carbon dioxide and solvent extraction of 2-acetyl-1-pyrroline from Pandan leaf: The effect of pre-treatment Yahya F, Lu T, Santos RCD, Fryer PJ, Bakalis S |
208 - 216 |
Reaction kinetics of D-xylose in sub- and supercritical water Aida TM, Shiraishi N, Kubo M, Watanabe M, Smith RL |
217 - 222 |
Transformation of petroleum asphaltenes in supercritical water Kozhevnikov IV, Nuzhdin AL, Martyanov ON |
223 - 231 |
Effect of supercritical water on upgrading reaction of oil sand bitumen Morimoto M, Sugimoto Y, Saotome Y, Sato S, Takanohashi T |
232 - 240 |
Upgrading of bitumen with formic acid in supercritical water Sato T, Mori S, Watanabe M, Sasaki M, Itoh N |
241 - 245 |
Supercritical fluids as reaction media in the ethylbenzene disproportionation on ZSM-5 Sotelo JL, Rodriguez A, Agueda VI, Gomez P |
246 - 251 |
Kinetics of ethanol oxidation in subcritical water Koido K, Ishida Y, Kumabe K, Matsumoto K, Hasegawa T |
252 - 258 |
Synthesis of Zn2SnO4 anode material by using supercritical water in a batch reactor Lee JW, Lee CH |
259 - 270 |
Influence of process parameters on the hydrothermal decomposition and oxidation of glucose in sub- and supercritical water Klingler D, Vogel H |
271 - 281 |
PGSS-drying: Mechanisms and modeling Martin A, Weidner E |
282 - 291 |
In situ optical monitoring of the solution concentration influence on supercritical particle precipitation Dowy S, Braeuer A, Reinhold-Lopez K, Leipertz A |
292 - 299 |
Recrystallization of erlotinib hydrochloride and fulvestrant using supercritical antisolvent process Tien YC, Su CS, Lien LH, Chen YP |
300 - 306 |
Organic nanoparticles recovery in supercritical antisolvent precipitation Torino E, De Marco I, Reverchon E |
307 - 315 |
Mechanism and kinetics of Al2O3 nanoparticles formation by reaction of bulk Al with H2O and CO2 at sub- and supercritical conditions Vostrikov AA, Fedyaeva ON |
316 - 324 |
Micronization of creatine monohydrate via Rapid Expansion of Supercritical Solution (RESS) Hezave AZ, Aftab S, Esmaeilzadeh F |
325 - 332 |
Development of sheet-like dielectric barrier discharge microplasma generated in supercritical fluids and its application to the synthesis of carbon nanomaterials Kikuchi H, Stauss S, Nakahara S, Matsubara F, Tomai T, Sasaki T, Terashima K |
333 - 339 |
Development of functional mesoporous microparticles for controlled drug delivery Restani RB, Correia VG, Bonifacio VDB, Aguiar-Ricardo A |
340 - 347 |
Piroxicam solid state studies after processing with SAS technique De Zordi N, Kikic I, Moneghini M, Solinas D |
348 - 357 |
Preparation of bitter taste masked cetirizine dihydrochloride/beta-cyclodextrin inclusion complex by supercritical antisolvent (SAS) process Lee CW, Kim SJ, Youn YS, Widjojokusumo E, Lee YH, Kim J, Lee YW, Tjandrawinata RR |
358 - 362 |
Extension of a compressible lattice model to CO2 + cosolvent plus polymer systems Yuan YH, Teja AS |
363 - 372 |
Experimental cloud points for polybutadiene plus light solvent and polyethylene plus light solvent systems at high pressure Milanesio JM, Mabe GDB, Ciolino AE, Quinzani LM, Zabaloy MS |
373 - 380 |
Effects of CO2 treatments on the dual glassy relaxations and dual melting peaks in poly(ethylene terephthalate) Shieh YT, Li YH, Huang CC, Wang TL |
381 - 385 |
Dispersion polymerization in supercritical carbon dioxide using comb-like fluorinated polymer surfactants having different backbone structures Kim BG, Shin J, Sohn EH, Chung JS, Bae W, Kim H, Lee JC |
386 - 394 |
Interfacial tension of linear and branched PP in supercritical carbon dioxide Liao X, Li YGG, Park CB, Chen P |
395 - 400 |
Purification of ionic liquids by supercritical CO2 monitored by infrared spectroscopy Andanson JM, Jutz F, Baiker A |