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kw.\*:("Porosimetría mercurio")

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Filter media characterization by mercury intrusionRUCINSKI, K; CARONIA, A; MCNEIL, R et al.Tappi journal. 1986, Vol 69, Num 11, pp 121-123, issn 0734-1415Article

Theoretical studies of mercury intrusion in some networks: testing the applicability of mercury intrusion in the size characterisation of the lacunar pore space of soil samplesRENAULT, P.Transport in porous media. 1988, Vol 3, Num 6, pp 529-547, issn 0169-3913Article

Characteristics of Coal Matrix Compressibility: An Investigation by Mercury Intrusion PorosimetryXIAOQIAN GUO; YANBIN YAO; DAMENG LIU et al.Energy & fuels. 2014, Vol 28, Num 5-6, pp 3673-3678, issn 0887-0624, 6 p.Article

Molecular modeling of mercury porosimetryPORCHERON, F; MONSON, P. A; THOMMES, M et al.Studies in surface science and catalysis. 2006, pp 87-94, issn 0167-2991, isbn 0-444-52022-8, 8 p.Conference Paper

Pore structures of stoichiometric and nonstoichiometric Al-P-O catalystsSCHMIDIMEYER, A; MOFFAT, J. B.Materials chemistry and physics. 1985, Vol 13, Num 5, pp 409-421, issn 0254-0584Article

Modelisation and circulation of fluids in geological porous systems. images analyzing and mercury porosimetryGALAUP, S; BURLOT, R; CEREPI, A et al.Studies in surface science and catalysis. 2006, pp 705-712, issn 0167-2991, isbn 0-444-52022-8, 8 p.Conference Paper

Investigation of pore structure of glass compacts by means of mercury porosimetrySMEETS, Karsten; TABELLION, Jan; CLASEN, Rolf et al.Ceramic engineering and science proceedings. 2002, issn 0196-6219, vol. B, 629-636Conference Paper

Classifying Coal Pores and Estimating Reservoir Parameters by Nuclear Magnetic Resonance and Mercury Intrusion PorosimetryMINGJUN ZOU; CHONGTAO WEI; MIAO ZHANG et al.Energy & fuels. 2013, Vol 27, Num JULAOU, pp 3699-3708, issn 0887-0624, 10 p.Article

Simulation of mercury porosimetry using MRI images of porous mediaWATT-SMITH, Matthew J; RIGBY, Sean P; CHUDEK, J. A et al.Studies in surface science and catalysis. 2006, pp 177-184, issn 0167-2991, isbn 0-444-52022-8, 8 p.Conference Paper

Bestimmung des Porenvolumens durch Vorbeladung und Quecksilber-Porosimetrie = Determination of pore volume by preloading and mercury porosimetryLENTZ, H; RICHTER, W; YAPING ZHOU et al.Chemieingenieurtechnik. 1994, Vol 66, Num 11, pp 1514-1515, issn 0009-286XArticle

Measurement of the effective diffusion coefficient of nitrogen monoxide through porous monolith-type ceramic catalystsBEECKMAN, J. W.Industrial & engineering chemistry research. 1991, Vol 30, Num 2, pp 428-430, issn 0888-5885, 3 p.Article

Evaluation of pore structure geometry and morphology of hydrocarbon conversion catalystsMANN, R; KHALAF, K; AL-LAMY, A et al.Preprints - American Chemical Society. Division of Petroleum Chemistry. 1995, Vol 40, Num 3, pp 516-520, issn 0569-3799Conference Paper

Determination d'un réseau aleatoire de pores pour modéliser la sorption et la migration d'humidité dans un mortier de ciment = Determining a representative random pore-network for moisture sorption and migration in cement mortarDAIAN, J.-F; SALIBA, J.International journal of heat and mass transfer. 1991, Vol 34, Num 8, pp 2081-2096, issn 0017-9310Article

Ink-bottle effect in mercury intrusion porosimetry of cement-based materialsMORON, F; BÖHNI, H.Journal of colloid and interface science. 2002, Vol 246, Num 1, pp 135-149, issn 0021-9797Article

Mercury porosimetry of coals: pore volume distribution and compressibilityFRIESEN, W. I; MIKULA, R. J.Fuel (Guildford). 1988, Vol 67, Num 11, pp 1516-1520, issn 0016-2361Article

The sintering of diatomiteCALACAL, E. L; WHITTEMORE, O. J.American Ceramic Society bulletin. 1987, Vol 66, Num 5, pp 790-793, issn 0002-7812Article

The general equation of the high pressure mercury porosimetryKADLEC, O.Adsorption Science & Technology. 1987, Vol 1, Num 2, pp 177-182, issn 0263-6174Article

A random pattern extension to the stochastic network pore modelMANN, R; ALMEIDA, J. J; MUGERWA, M. N et al.Chemical engineering science. 1986, Vol 41, Num 10, pp 2663-2671, issn 0009-2509Article

Hysteresis caused by dimensional changes of porous solids during mercury porosimetryTERNAN, M; MYSAK, L. P.Powder technology. 1987, Vol 52, Num 1, pp 29-34, issn 0032-5910Article

Mercury porosimetry: theoretical and experimental characterization of random microsphere packingsSMITH, D. M; STERMER, D. L.Journal of colloid and interface science. 1986, Vol 111, Num 1, pp 160-168, issn 0021-9797Article

Application of mercury porosimetry to powder (UO2) analysisEMERUWA, E; JARRIGE, J; MEXMAIN, J et al.Journal of nuclear materials. 1991, Vol 184, Num 1, pp 53-58, issn 0022-3115Article

Effect of porous structure on the determination of pore size distribution by mercury porosimetry and nitrogen sorptionZGRABLICH, G; MENDIOROZ, S; DAZA, L et al.Langmuir. 1991, Vol 7, Num 4, pp 779-785, issn 0743-7463Article

Powder particle sizes from mercury porosimetryPOSPECH, R; SCHNEIDER, P.Powder technology. 1989, Vol 59, Num 3, pp 163-171, issn 0032-5910Article

The effect of drying on cement pastes pore structure as determined by mercury porosimetryMOUKWA, M; AITCIN, P.-C.Cement and concrete research. 1988, Vol 18, Num 5, pp 745-752, issn 0008-8846Article

Mercury pressure porosimetry as an accessory to the development of shaping and firing techniques for dense ceramic components. IIHARBACH, F; NIENBURG, H.CFI. Ceramic forum international. 1987, Vol 64, Num 10, pp 394-397, issn 0173-9913Article

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