Microporous Media


Book Description

Microporous Media presents new developments from nearly a decade of advancement. Written by a leading researcher in the field, this reference provides examples of the most original scientific and technical research impacting studies in porosity and microporosity, and illustrates methods to forecast the properties of microporous structures for improved electronic, construction, electrical, chemical, and medical applications. The book outlines new results in fractal, self-organization, and polymer theories; pore aging, and percolation; and their various engineering applications, and considers the impact of preparation conditions on the structure and properties of microporous materials.










Transport Perspectives for Porous Medium Applications


Book Description

Porous media, with their distinctive structure, are indispensable in both scientific inquiry and engineering endeavors. Their specialized composition makes them versatile, finding utility in diverse domains ranging from subterranean aquifers to innovative energy converters, and from biomedical technologies to environmental solutions. The intricate pore networks within porous media serve as reservoirs for fluids and gases while significantly impacting the dynamics of transport processes. Thus, a comprehensive understanding of their inherent traits and behaviors is imperative for enhancing their operational efficiency and resolving pertinent engineering challenges. This comprehensive volume explores the latest transport advancements in porous media applications, from measuring relative permeability to designing metal foam flow fields in fuel cells. With a focus on cutting-edge methodologies and technologies, such as microstructure reconstruction and hierarchical porous catalysts, this book aims to inspire innovation and drive progress in porous media applications. Offering insights into emerging trends and future directions, this book is a valuable resource for researchers, engineers, and students looking to make a significant impact in energy, environment, and engineering challenges. Dive into the world of porous media and uncover new opportunities for collaboration and development in this dynamic field.




Fuel Cell Engines


Book Description

Fuel Cell Engines is an introduction to the fundamental principles of electrochemistry, thermodynamics, kinetics, material science and transport applied specifically to fuel cells. It covers scientific fundamentals and provides a basic understanding that enables proper technical decision-making.




Encyclopedia of Surface and Colloid Science -


Book Description

This comprehensive reference collects fundamental theories and recent research from a wide range of fields including biology, biochemistry, physics, applied mathematics, and computer, materials, surface, and colloid science-providing key references, tools, and analytical techniques for practical applications in industrial, agricultural, and forensic processes, as well as in the production of natural and synthetic compounds such as foods, minerals, paints, proteins, pharmaceuticals, polymers, and soaps.




Nuclear Science Abstracts


Book Description

NSA is a comprehensive collection of international nuclear science and technology literature for the period 1948 through 1976, pre-dating the prestigious INIS database, which began in 1970. NSA existed as a printed product (Volumes 1-33) initially, created by DOE's predecessor, the U.S. Atomic Energy Commission (AEC). NSA includes citations to scientific and technical reports from the AEC, the U.S. Energy Research and Development Administration and its contractors, plus other agencies and international organizations, universities, and industrial and research organizations. References to books, conference proceedings, papers, patents, dissertations, engineering drawings, and journal articles from worldwide sources are also included. Abstracts and full text are provided if available.




The Physics of Fluids in Hierarchical Porous Media: Angstroms to Miles


Book Description

Porous media are ubiquitous throughout nature and in many modern technologies. Because of their omnipresent nature, porous media are studied to one degree or another in almost all branches of science and engineering. This text is an outgrowth of a two-semester graduate course on multiscale porous media offered to students in applied math, physics, chemistry, engineering (civil, chemical, mechanical, agricultural), and environmental and soil science. The text is largely based on Dr Cushmans' groups efforts to build a rational approach to studying porous media over a hierarchy of spatial and temporal scales. No other text covers porous media on scales ranging from angstroms to miles. Nor does any other text develop and use such a diversity of tools for their study. The text is designed to be self-contained, as it presents all relevant mathematical and physical constructs.