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1 ed versus surfactant concentration, gives an adsorption isotherm.
2 .21 +/- 0.71) x 10(3) is determined from the adsorption isotherm.
3 isotherm is higher than that of the Langmuir adsorption isotherm.
4 55 and N80 steel surface obeyed the Langmuir adsorption isotherm.
5  quantitatively modeled by using the Frumkin adsorption isotherm.
6 nin concentration, is well fit by a Langmuir adsorption isotherm.
7 ponding to the two steps in the experimental adsorption isotherm.
8 pholipid membranes are well fitted by single adsorption isotherms.
9 d different than its role on the equilibrium adsorption isotherms.
10 ts are presented, along with a discussion of adsorption isotherms.
11 electron micrographs, X-ray diffraction, and adsorption isotherms.
12 y differences obtained from CO2 and n-butane adsorption isotherms.
13  inconsistencies between structural data and adsorption isotherms.
14 model for lateral interactions, to calculate adsorption isotherms.
15 to assess molecular diffusivities and binary adsorption isotherms.
16 e stages generally characterized the various adsorption isotherms: an initial delay during which surf
17 hermal titration calorimetry and equilibrium adsorption isotherm analysis.
18 hermal titration calorimetry and equilibrium adsorption isotherm analysis.
19                                              Adsorption isotherm and trans vivo analyses demonstrated
20 creasing concentrations of U to establish an adsorption isotherm and with fixed U concentrations at v
21           By combining pattern analysis with adsorption isotherm and zeta potential measurements, we
22  of CO2 manifesting in double transitions on adsorption isotherms and a doubling of the adsorption ca
23 ong the triangular corners of the structure, adsorption isotherms and calculated isosteric heats indi
24 confirmed by single-component and binary gas-adsorption isotherms and crystallographic determination.
25                  We report nucleic acid (NA) adsorption isotherms and elution profiles for silica sur
26                                At 304 K, the adsorption isotherms and enthalpies of adsorption on deh
27 imulations and single component static vapor adsorption isotherms and kinetics reveal the origin of t
28                                              Adsorption isotherms and liquid-phase chromatographic me
29 nd SWNTs is therefore critical to predicting adsorption isotherms and selectivities.
30                                          The adsorption isotherms and selectivity of CO(2) from CO(2)
31 t may be fitted to a model based on Langmuir adsorption isotherms and simple analytical expressions,
32                                              Adsorption isotherms and single molecule force spectrosc
33 ts under the general subject headings of (i) adsorption isotherms and temperature programme desorptio
34                    We report measurements of adsorption isotherms and the determination of the isoste
35  for determining surface areas from nitrogen adsorption isotherms and was originally derived for mult
36 2)/g internal surface area (obtained from N2 adsorption isotherms) and a 2 nm pore-pore separation.
37 studied by in situ vibrational spectroscopy, adsorption isotherms, and first-principle DFT calculatio
38                                          The adsorption isotherms are always strictly convex upward i
39 slow (on the order of days), and equilibrium adsorption isotherms are best fit using the Freundlich m
40 rogen, methane, carbon dioxide and argon gas adsorption isotherms are reported and the selectivity of
41  steps, and hysteresis that can arise in the adsorption isotherm as a signature of the rotating ligan
42 nvestigated by conventional single component adsorption isotherms, as well as by advanced experiments
43 ins exhibit a characteristic sigmoidal water adsorption isotherm at ambient conditions.
44 sented higher hygroscopicity in the moisture adsorption isotherms at 25 degrees C and lower thermal s
45                                          Gas adsorption isotherms at 298 K indicate that Fe(2)(dobdc)
46                 Surface pressure-time (pi-t) adsorption isotherms at 37 degrees C were very similar f
47 ion of both pyridine and 4-nitrophenol vapor adsorption isotherms at very low concentrations.
48 AB model was chosen to describe the moisture adsorption isotherm behaviours.
49 xceptional hydrolytic stability with the CO2 adsorption isotherm being unchanged following 7 days of
50  was investigated and found to obey Langmuir adsorption isotherm characteristics.
51          Under these same conditions, uranyl adsorption isotherms collected using nonresonant chi(3)
52 n may lead to considerable steepening of the adsorption isotherm, compensating to a variable extent f
53 was investigated based on the acquisition of adsorption isotherm data by frontal analysis measurement
54                                              Adsorption isotherm data for each enantiomer in each of
55 s of 3.4 A each) was confirmed by the excess adsorption isotherm data measured for acetonitrile on Di
56                                              Adsorption isotherm data of caffeine were acquired by fr
57 electron spectroscopy (XPS) coupled with the adsorption isotherm data suggests that JAK1 binds to HA,
58            Selectivities determined from gas adsorption isotherm data using ideal adsorbed solution t
59                       At each concentration, adsorption isotherm data were acquired for each enantiom
60  is strongest in IRMOF-11 in accord with our adsorption isotherm data.
61 simulation of H(2)O uptake shows a multistep adsorption isotherm defined by initial adsorption at ope
62 pplication of salts, and followed a Langmuir adsorption isotherm dependent on the particle surface fu
63 eathing can be inferred from the analysis of adsorption isotherms, direct observation of the structur
64 wt % at 2 mbar, while the corresponding N(2) adsorption isotherm displays very little uptake, gradual
65 -ray diffraction, gas-sorption analysis, and adsorption isotherms/envelopes.
66 icomponent VOCs mixtures and the competitive adsorption isotherm equation is able to accurately predi
67 ding data to both the Hill-Waud and Langmuir adsorption isotherm equations.
68 y than that obtained by calculation from the adsorption isotherms, especially for systems showing com
69                                              Adsorption isotherms established that the equilibrium bi
70                       Calculated equilibrium adsorption isotherms exhibit apparent high-affinity and
71                                          The adsorption isotherms exhibited an increasing trend in th
72 ocarbon vapours, such as dibromomethane, the adsorption isotherm exhibits an hysteresis loop; a gradu
73 e measurement of the concentration dependent adsorption isotherm for a model protein (fibrinogen); an
74                           At 298 K, the O(2) adsorption isotherm for Cr(3)(BTC)(2) rises steeply to a
75                                          The adsorption isotherm for disperse red 1 on glass was foun
76                                          The adsorption isotherm for rhodamine 6G on glass was found
77 imulations were carried out to determine the adsorption isotherms for a given adsorbent-adsorbate int
78     This prompted us to examine low-pressure adsorption isotherms for a wide range of samples and led
79                                      Methane adsorption isotherms for activated FMOF-1 attained volum
80                            Simulated methane adsorption isotherms for Cu3(btc)2 are shown to exhibit
81  measurements included surface pressure time adsorption isotherms for dispersed surfactants with diff
82     The examination of low-pressure nitrogen adsorption isotherms for FDU-1 samples, whose pore entra
83                              The H 2 and D 2 adsorption isotherms for M'MOF 1 at 77.3 and 87.3 K were
84 tion instrument that can measure equilibrium adsorption isotherms for mixtures of gases at conditions
85 Monte Carlo simulations were used to predict adsorption isotherms for nitrogen in a series of MOFs.
86 d to accomplish the following: (i) construct adsorption isotherms for the interactions of ConA and ja
87 m causes a transformation in the equilibrium adsorption isotherm from a Langmuir type to a Freundlich
88 les can be modeled in terms of Langmuir-type adsorption isotherms (Hill model).
89 of adsorption (Qst) and the steepness of the adsorption isotherm in the low-pressure region.
90 ental site availability (76.5%), we obtained adsorption isotherms in close agreement with those in ex
91  to 8 degrees C via the observation of water adsorption isotherms in SWNTs measured by nuclear magnet
92                                     The N(2) adsorption isotherms indicate a reduction in the BET sur
93                                              Adsorption isotherms indicate an adsorption capacity gre
94                                              Adsorption isotherms indicate nearly quantitative surfac
95                                              Adsorption isotherms indicate reversible adsorption, wit
96 ited similar XRD patterns and their nitrogen adsorption isotherms indicated a good-quality cage-like
97       The fitting accuracy of the Freundlich adsorption isotherm is higher than that of the Langmuir
98                             The predicted H2 adsorption isotherm is in excellent agreement with the o
99 hich corresponds to the initial slope of the adsorption isotherm) is approximately twice as large for
100                                     From the adsorption isotherms, it was possible to deduce the corr
101                                              Adsorption isotherms measured at Tl(+) concentrations fr
102                                     Nitrogen adsorption isotherms measured for 1d at 77 and 87 K reve
103                                          Our adsorption isotherm measurements at 298 K and 35 bar for
104                      Resonantly enhanced SHG adsorption isotherm measurements carried out at the sili
105 ption data to the appropriate multi-Langmuir adsorption isotherm model, were analyzed and compared.
106 phy was derived in the case of a bi-Langmuir adsorption isotherm model.
107                                     The best adsorption isotherm models are the bi-Langmuir and the t
108 STFC Rutherford Appleton Laboratory along an adsorption isotherm of 22 degrees C and pressures of 25
109  D, based on measuring both the water vapour adsorption isotherm of a given substance, and its abilit
110 is finding has been correlated to the excess adsorption isotherm of acetonitrile/water binary mixture
111                                              Adsorption isotherm of Cur into Alg was fitted with the
112                                          The adsorption isotherm of DEHP on the stainless steel chamb
113       In addition, the sorption kinetics and adsorption isotherm of phthalates on stainless steel cha
114  imaging is used to construct a quantitative adsorption isotherm of the hybridization adsorption on a
115 e concentrated samples demonstrated that the adsorption isotherm of the zwitterionic species is an an
116                                       The N2 adsorption isotherm of ZIF-90 shows a highly porous mate
117                               Pure component adsorption isotherms of CO(2), CH(4), and N(2) were meas
118                      The changes in moisture adsorption isotherms of commercial biscuits during stora
119                                        Water adsorption isotherms of dense CNT membranes suggest that
120                               The dihydrogen adsorption isotherms of eight metal-organic frameworks (
121 o our knowledge, this is the first report of adsorption isotherms of fluorocarbon R134a in MOFs.
122 ing breakthrough experiments and analysis of adsorption isotherms of gas mixtures.
123 strate can exert a profound influence on the adsorption isotherms of liquids.
124                                          The adsorption isotherms of phenol and caffeine were acquire
125                             Single component adsorption isotherms of phenol and caffeine were measure
126                              The competitive adsorption isotherms of rac-1-phenyl-1-propanol on cellu
127                                      Indeed, adsorption isotherms of the probe indicate the presence
128 ls in solution were used to assemble surface adsorption isotherms on Au colloid revealing surface cov
129                              The equilibrium adsorption isotherms on two otherwise identical polymers
130 rmonic generation as a means to probe either adsorption isotherms or the kinetics of adsorption/desor
131                                          The adsorption isotherm parameters (number of types of adsor
132  rapid, economical determination of the best adsorption isotherm parameters for phenol.
133 For proof of concept, the steric mass action adsorption isotherm parameters of a binary test set of p
134 librium aspects of the observed experimental adsorption isotherms, rate and affinity constants can be
135               It was shown that the Langmuir adsorption isotherm recapitulates a general trend of sig
136                                     Chromate adsorption isotherms recorded at pH 7 are suggestive of
137 -dicarboxylate) that feature step-shaped CO2 adsorption isotherms resulting from cooperative and reve
138 theory presented in part 1, yielded reliable adsorption isotherm results that were essentially indepe
139                        High-pressure methane adsorption isotherms revealed a high total gravimetric a
140                      Variable temperature H2 adsorption isotherms revealed strong adsorption at the o
141                           Finally, the CO(2) adsorption isotherms showed that activated amorphous car
142 ion of the adsorbed DCF amount as the linear adsorption isotherm shows.
143  1 and 50 mM [H], g(H) can be fitted with an adsorption isotherm, suggesting the presence of a proton
144  retention factors) and the nonlinear (i.e., adsorption isotherms, surface heterogeneity, saturation
145 ccurate in fitting the experimental bisolute adsorption isotherms than RAST.
146  +/- 25 lipids when analyzed with a Langmuir adsorption isotherm) than to zwitterionic PC SUVs (K(d)
147  modelled successfully using a Langmuir-like adsorption isotherm that incorporates the formation of h
148 ge' adsorbents, with unusual step-shaped CO2 adsorption isotherms that shift markedly with temperatur
149                             According to the adsorption isotherm the best temperature of operation wa
150                          Assuming a Langmuir adsorption isotherm, the dissociation constant of the pe
151                     From the analysis of the adsorption isotherm, the equilibrium adsorption constant
152     In addition, by assuming a Langmuir-type adsorption isotherm to measure the initial binding rate,
153                                   By fitting adsorption isotherms to the modified model using epsilon
154 mpA to montmorillonite was measured, and the adsorption isotherm was determined.
155                        A linearized Langmuir adsorption isotherm was used to obtain information regar
156                                     Based on adsorption isotherms, we obtained dissociation constants
157                                          The adsorption isotherms were all convex upward (langmuirian
158                           The mobility-based adsorption isotherms were constructed from both computer
159 icochemical properties on this relationship, adsorption isotherms were generated for a suite of polyc
160  ion concentrations in the bulk water, their adsorption isotherms were measured.
161                                          The adsorption isotherms were obtained using alkyl surfactan
162 om fitting experimental points to a Langmuir adsorption isotherm, were approximately 1500 pS and 300
163 nt porosity as evidenced by their type I gas adsorption isotherms with CO(2) (g).
164 on models were tested by comparing simulated adsorption isotherms with experimental isotherms on a hi

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