By Jean Rouquerol, Visit Amazon's Françoise Rouquerol Page, search results, Learn about Author Central, Françoise Rouquerol, , Kenneth S.W. Sing

The declared target of this e-book is to supply an introductory overview of some of the theoretical and sensible features of adsorption through powders and porous solids with specific connection with fabrics of technological significance. the first goal is to satisfy the wishes of scholars and non-specialists, who're new to floor technology or who desire to use the complicated thoughts now to be had for the choice of floor zone, pore measurement and floor characterization. additionally, a severe account is given of contemporary paintings at the adsorptive houses of activated carbons, oxides, clays and zeolites. Key positive aspects * offers a complete therapy of adsorption at either the gas/solid interface and the liquid/solid interface * contains chapters facing experimental technique and the translation of adsorption info received with porous oxides, carbons and zeolites * ideas catch the significance of heterogeneous catalysis, chemical engineering and the creation of pigments, cements, agrochemicals, and prescription drugs

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Besides HPLC columns, he illustrates the high permeability and homogeneous flow-through pore structure of macroporous silica for various purposes related to separation science. Manufacturing monolithic columns requires robust and sophisticated engineering processes that make the solution-based synthesis of solid porous structures highly reproducible. Many other applications of hierarchically porous monoliths such as gas–solid and liquid–solid heterogeneous catalysis, integrated multistep in-column reactions and purifications, miniaturized (bio)reactors and therapeutic selective removal of harmful substances, and use in biomedicals are commented.

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L. (2010) Chem. , 22, 3251. L. (2003) Adv. , 15, 1462. H. (2003) Adv. Funct. , 13, 61. 23 24 1 Insights into Hierarchically Structured Porous Materials 111. , Leonard, 112. 113. 114. 115. 116. 117. 118. 119. 120. 121. 122. 123. 124. 125. 126. 127. 128. 129. 130. 131. 132. 133. L. (2003) Chem. , 1558. L. (2003) Chem. , 2568. , and Mann, S. (2004) Chem. , 568. Leonard, A. L. (2004) Chem. , 1674. L. (2004) Chem. , 2730. L. (2004) Chem. , 16, 5096. L. (2004) Langmuir, 20, 1531. L. (2004) New J. , 28, 1083.

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