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Catalysis : an Integrated Approach to Homogeneous ...

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12.3 Adsorption Isotherms ............................ 422<br />

12.4 Classification of Pore Sizes ......................... 423<br />

12.5 Porosity of Porous Subst<strong>an</strong>ces ....................... 423<br />

12.6 The Yardstick in the Determination of Surface Areas .......... 424<br />

12.7 The L<strong>an</strong>gmuir Adsorption Isotherm (Monolayer Adsorption) <strong>an</strong>d<br />

the BET Equation (Multilayer Adsorption) ................ 425<br />

12.8 The Concept of a St<strong>an</strong>dard Isotherm; the t Method ........... 428<br />

12.9 Microporosity ................................. 432<br />

12.10 Pore Radii <strong>an</strong>d Pore Volume Distributions ................ 433<br />

12.11 Hysteresis Loops ............................... 435<br />

12.12 The Corrected Kelvin Equation ....................... 436<br />

12.13 Conclusions .................................. 437<br />

References ...................................... 437<br />

FUTURE TRENDS<br />

Chapter 13<br />

FUTURE TRENDS<br />

J.A. Moulijn. P.W.N.M. v<strong>an</strong> Leeuwen <strong>an</strong>d R.A. v<strong>an</strong> S<strong>an</strong>ten ........ 441<br />

13.1 Environmental Dem<strong>an</strong>ds .......................... 442<br />

13.2 Au<strong>to</strong>nomous Developments: Chemistry . ................. 442<br />

13.3 Au<strong>to</strong>nomous Developments: Catalytic Reaction Engineering ..... 444<br />

Subject Index ..................................... 447

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