Sentence examples for average pore width from inspiring English sources

Exact(12)

Whereas the average pore width decreased by 3.16%.

Predominant mesopores were added to pitch-based activated carbon fiber (0.7 nm of average pore width) by Ca(NO3 2-impregnated chemical activatioNO3 2-impregnated

It is often in disagreement with SBET, but a closer study of 42 well characterized microporous carbons, for which all four techniques are available, shows that the ratio SBET/Sav increases linearly with the average pore width.

A dual porosity model, which allows for the existence of a significant fraction of bulk liquid water even at conditions where the average pore width is only a few nanometers may be required to describe both pore scale and macroscopic scale data.

Self-cross-linked 4,4′-bis chloromethyl -1,1′-biphenyl 4,4′-bis chloromethyl -1,1′-biphenyl 4,4′-bis chloromethyl -1,1′-biphenyl 4,4′-bis chloromethyl -1,1′-biphenyl the Friedel-Crafts reaction in 1,2-dichloroethane (DCE) with reactive (BCMBPne) or non-reactive (hexane and cyclohexane) co-solvents.

Compared with CB, the PbO/CB composites prepared by the pyrolysis-pickling method have higher content of alkaline surface functional groups (Calkaline) and less content of carboxyl surface functional groups (CCOOH) on CB particles which are still covered with small amount of PbO, meanwhile they have smaller BET surface area, but larger pore volume and average pore width.

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Similar(48)

It appears clearly that SBET and the real surface area Smi + Se are in agreement only for carbons with average pore widths Lo around 0.8 1.1 nm.

The present carbons have micropore volumes varying between 0.29 and 0.66 cm3 g−1 and average pore widths Lo between 0.62 and 1.23 nm.

The study of 26 microporous carbons with average pore widths Lo between 0.7 and 1.8 nm shows that the volume-related capacitance Cmi (F cm− 3) in the organic electrolyte (C2H5 4NBF4/acetonitrile is an inverse function of the average micropore width Lo.

The geometrical characteristics of the porous structures such as porosity, strut length (l), width (w) and average pore diameter (dave) were determined and their hydraulic performances were characterized using the Forchheimer-extended Darcy equation where the permeability (K) and inertia coefficient (CE) of the respective porous structures were obtained.

(a) Nitrogen adsorption isotherm according to the BET model and (b) Pore size distribution (represented as differential pore volume plotted against pore width) derived from (a), calculated with the NLDFT model.

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