Transport and Reactivity of Solutions in Confined Hydrosystems

Nonfiction, Science & Nature, Technology, Engineering, Environmental, Science, Biological Sciences, Environmental Science
Cover of the book Transport and Reactivity of Solutions in Confined Hydrosystems by , Springer Netherlands
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9789400775343
Publisher: Springer Netherlands Publication: November 12, 2013
Imprint: Springer Language: English
Author:
ISBN: 9789400775343
Publisher: Springer Netherlands
Publication: November 12, 2013
Imprint: Springer
Language: English

The present work reflects a multi-disciplinary effort to address the topic of confined hydrosystems developed with a cross-fertilization panel of physics, chemists, biologists, soil and earth scientists. Confined hydrosystems include all situations in natural settings wherein the extent of the liquid phase is limited so that the solid-liquid and/or liquid-air interfaces may be critical to the properties of the whole system. Primarily, this so-called “residual” solution is occluded in pores/channels in such a way that decreases its tendency to evaporation, and makes it long-lasting in arid (Earth deserts) and hyper-arid (Mars soils) areas. The associated physics is available from domains like capillarity, adsorption and wetting, and surface forces. However, many processes are still to understand due to the close relationship between local structure and matter properties, the subtle interplay between the host and the guest, the complex intermingling among static reactivity and migration pathway.

Expert contributors from Israel, Russia, Europe and US discuss the behaviour of water and aqueous solutes at different scale, from the nanometric range of carbon nanotubes and nanofluidics to the regional scale of aquifers reactive flow in sedimentary basins. This scientific scope allowed the group of participants with very different background to tackle the confinement topic at different scales. The book is organized according to four sections that include: i) flow, from nano- to mega-scale; ii) ions, hydration and transport; iii) in-pores/channels cavitation; iv) crystallization under confinement. Most of contributions relates to experimental works at different resolution, interpreted through classic thermodynamics and intermolecular forces. Simulation techniques are used to explore the atomic scale of interfaces and the migration in the thinnest angstrom-wide channels.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The present work reflects a multi-disciplinary effort to address the topic of confined hydrosystems developed with a cross-fertilization panel of physics, chemists, biologists, soil and earth scientists. Confined hydrosystems include all situations in natural settings wherein the extent of the liquid phase is limited so that the solid-liquid and/or liquid-air interfaces may be critical to the properties of the whole system. Primarily, this so-called “residual” solution is occluded in pores/channels in such a way that decreases its tendency to evaporation, and makes it long-lasting in arid (Earth deserts) and hyper-arid (Mars soils) areas. The associated physics is available from domains like capillarity, adsorption and wetting, and surface forces. However, many processes are still to understand due to the close relationship between local structure and matter properties, the subtle interplay between the host and the guest, the complex intermingling among static reactivity and migration pathway.

Expert contributors from Israel, Russia, Europe and US discuss the behaviour of water and aqueous solutes at different scale, from the nanometric range of carbon nanotubes and nanofluidics to the regional scale of aquifers reactive flow in sedimentary basins. This scientific scope allowed the group of participants with very different background to tackle the confinement topic at different scales. The book is organized according to four sections that include: i) flow, from nano- to mega-scale; ii) ions, hydration and transport; iii) in-pores/channels cavitation; iv) crystallization under confinement. Most of contributions relates to experimental works at different resolution, interpreted through classic thermodynamics and intermolecular forces. Simulation techniques are used to explore the atomic scale of interfaces and the migration in the thinnest angstrom-wide channels.

More books from Springer Netherlands

Cover of the book Tumor Dormancy, Quiescence, and Senescence, Volume 1 by
Cover of the book Numerical Computation of Electric and Magnetic Fields by
Cover of the book The Marine Seismic Source by
Cover of the book Zutot 2001 by
Cover of the book The Theory of Committees and Elections by Duncan Black and Committee Decisions with Complementary Valuation by Duncan Black and R.A. Newing by
Cover of the book Ecology of Atlantic Salmon and Brown Trout by
Cover of the book Phenomenology of Values and Valuing by
Cover of the book Italian Syntax by
Cover of the book Elements of Social and Political Philosophy by
Cover of the book Radiobiology and Environmental Security by
Cover of the book Using and programming the Epson HX-20 portable computer by
Cover of the book International Bar Association by
Cover of the book Tsunami Research at the End of a Critical Decade by
Cover of the book Issues in Husserl’s Ideas II by
Cover of the book Trap Magmatism and Ore Formation in the Siberian Noril'sk Region by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy