Search Results - "Paz Andrade, M.I"
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Measurement and prediction of excess molar enthalpies of ternary mixtures involving ether with 1-alkanol and n-alkane
Published in Journal of molecular liquids (15-08-2024)“…•Experimental enthalpies, for mixtures MTBE + pentanol + heptane and pentanol+ heptane, were measured.•A systematic review on the enthalpy for ternary mixtures…”
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Viscosity deviations of ternary mixtures di- n-butyl ether+1-propanol+ n-octane at several temperatures
Published in Fluid phase equilibria (01-08-1998)“…Viscosities and densities of { x 1 di- n-butyl ether+ x 2 1-propanol+(1− x 1− x 2) n-octane} and their corresponding binary mixtures were measured at the…”
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Contribution to study of the thermodynamics properties of mixtures containing 2-methoxy-2-methylpropane, alkanol, alkane
Published in The Journal of chemical thermodynamics (01-06-2014)“…•Experimental enthalpies for the mixtures MTBE+pentanol+hexane and pentanol+hexane were measured.•No experimental ternary values were found in the currently…”
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Excess molar volumes of ternary mixtures {cyclohexane+ n-hexane+1-chlorohexane} and {cyclohexane+ n-hexane+1-hexanol} at the temperature of 298.15 K
Published in Fluid phase equilibria (01-01-1998)“…Excess molar volumes of the ternary mixtures { x 1 cyclohexane+ x 2 n-hexane+(1− x 1− x 2) 1-chlorohexane} and { x 1 cyclohexane+ x 2 n-hexane+(1− x 1− x 2)…”
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Experimental and predicted data of excess molar enthalpies and excess molar volumes for the ternary system (1,3-dichlorobenzene+benzene+1-chlorohexane) at T=298.15K
Published in The Journal of chemical thermodynamics (01-06-2014)“…•Experimental enthalpy and densitiy for the mixture 1,3-dichlorobenzene+benzene+1-chlorohexane were measured.•The excess molar volumes were calculated from the…”
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Microcalorimetric study on the growth and metabolism of Pseudomonas aeruginosa
Published in Journal of thermal analysis and calorimetry (01-08-2011)“…Microcalorimetry is an experimental technique which allows us to precisely measure the energy released as a consequence of any transformation process. All…”
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Excess enthalpy, density, and speed of sound determination for the ternary mixture (methyl tert-butyl ether + 1-butanol + n-hexane)
Published in The Journal of chemical thermodynamics (01-09-2007)“…Density, ( ρ), and speed of sound, ( u), from T = 288.15 to T = 308.15 K, and excess molar enthalpies, ( h E) at T = 298.15 K, have been measured over the…”
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Excess molar enthalpies of dichloropropane + n-alkane mixtures: Study on the effect of increasing the chain length of the n-alkane and the influence of the chlorine position
Published in Journal of thermal analysis and calorimetry (01-09-2010)“…We have determined the excess molar enthalpies at 298.15 K and normal atmospheric pressure for the binary mixtures containing dichloropropane and n -alkane [{…”
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Comparison of two calorimetric methods to determine the loss of organic matter in Galician soils (NW Spain) due to forest wildfires
Published in Thermochimica acta (09-02-2004)“…Seven forest soils, Cambisols under pinus, located at Galicia (NW Spain) and affected by forest wildfires were collected to determine the loss of organic…”
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Looking for a model for the prediction of the forest fire peaks in Galicia (NW of Spain)
Published in Forest ecology and management (15-11-2006)Get full text
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Analysis of the thermodynamic properties of (1-chloroalkane + 1-alkanol) mixtures using the Nitta–Chao group contribution model
Published in The Journal of chemical thermodynamics (01-10-2007)“…The interaction parameters between group chloro (–Cl) and hydroxyl (–OH) for the group contribution model of Nitta et al. 1977 (Nitta–Chao model) have been…”
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Experimental and theoretically estimated excess molar enthalpies for (ethyl propionate + n -hexane + 1-pentanol) atT = 298.15 K
Published in The Journal of chemical thermodynamics (01-07-2002)“…Excess molar enthalpies at T= 298.15 K and atmospheric pressure of (ethyl propionate +n -hexane + 1-pentanol), and of( n -hexane + 1-pentanol) and (ethyl…”
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Excess Molar Enthalpies of Propyl Propanoate + Hexane + Benzene at 298.15 K and 308.15 K
Published in Journal of chemical and engineering data (11-05-2000)“…Excess molar enthalpies of the ternary system {x 1 propyl propanoate + x 2 hexane + (1 − x 1 − x 2) benzene} and of their binary mixtures {x 1 propyl…”
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Excess molar enthalpies of (α, ω-dichloroalkane + pentanol, or hexanol) atT=298.15 K
Published in The Journal of chemical thermodynamics (01-09-1998)“…We have determined the excess molar enthalpiesHEmof binary mixtures containing an α,ω-dichloroalkane (from 1,3-dichloropropane to 1,6-dichlorohexane) and a…”
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Relative permittivities and refractive indices on mixing for (n-hexane + 1-pentanol, or 1-hexanol, or 1-heptanol ) atT = 298.15 K
Published in The Journal of chemical thermodynamics (01-07-2000)“…A previous study on the physical properties of (1-alcohol +n -alkane) has established a correlation between dielectric permittivity at 1 GHz and excess molar…”
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Experimental and predicted excess molar volumes and excess molar enthalpies for di- n-butyl ether + 1-propanol + n-octane at 298.15 and 308.15 K
Published in Fluid phase equilibria (25-03-2001)“…Excess molar volumes at 298.15 and 308.15 K and excess molar enthalpies at 308.15 K and atmospheric pressure were measured for {x 1 di-n- butyl ether+x 2 1-…”
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Excess molar enthalpies and excess molar volumes of binary systems containing {xCH3(CH2)7Cl + (1 − x)CH3(CH2)n − 1OH} (n = 4 to 8) atT = 298.15 K
Published in The Journal of chemical thermodynamics (01-10-1999)“…Excess molar enthalpies HmEand excess molar volumes VmEat T= 298.15 K and normal atmospheric pressure for the binary systems {xCH3(CH2)7Cl + (1…”
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Excess molar volumes of ternary mixtures di-n-butyl ether+1-pentanol+n-dodecane at 298.15K
Published in Thermochimica acta (01-03-1999)Get full text
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Excess molar enthalpies for di- n-butylether+1-propanol+ n-decane at 298.15 and 308.15 K
Published in Fluid phase equilibria (15-03-1999)“…Excess molar enthalpies, H m E at 298.15 and 308.15 K and atmospheric pressure were measured for { x 1 di- n-butylether+ x 2 1-propanol+(1− x 1− x 2) n-decane}…”
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