Surface Complexation Models

Surface Complexation Models - Paperback

$100.96
Sale price  $100.96 Regular price 
Skip to product information
Surface Complexation Models

Surface Complexation Models - Paperback

$100.96
Sale price  $100.96 Regular price 

Book Overview

by Piotr Zarzycki (Editor), Johannes Lützenkirchen (Editor), Benjamin Gilbert (Editor)

Chemical reactions at aqueous interfaces play major roles in Earth terrestrial and subsurface cycles of most reactive elements, trace elements, heavy/radioactive ions, and environmental pollutants. Surface Complexation Models appear to be one of the most successful models in geochemistry to predict the chemical equilibrium state of a given interface in contact with solution. They have provided the ability to understand, predict, and explain the sorption of protons, aqueous ions, and molecules to hydrated mineral surfaces using physical models for interfacial processes and energies.

Volume 91A is intended to present the past, present, and future of Surface Complexation Modeling and nucleates the concepts for the next generation of more comprehensive SCMs that account for more complex chemistries and non-equilibrium phenomena.

Author Biography

_Piotr Zarzycki, Lawrence Berkeley National Laboratory, CA, USA.

_Johannes Lützenkirchen, Karlsruhe Institute of Technology, Germany.

_Benjamin Gilbert, Lawrence Berkeley National Laboratory, CA, USA and University of California, Berkeley, CA, USA.

Number of Pages: 470
Dimensions: 0.95 x 9.21 x 6.14 IN
Illustrated: Yes
Publication Date: August 18, 2025
ISBN9781946850164
Publisherde Gruyter
GenreEducation and Technology
FormatPaperback
PublishedAugust 2025
LanguageENG- English
Pages470
Weight1.0 lb
Target AudienceAdults
Print SizeStandard Print

1% fer Each of the Seven Seas

Every purchase sends 7% of our profits to The Ocean Cleanup. No fine print, no opt-in — just how we sail.

Whoever Ye Be, Welcome Aboard

Queer lit, music, art, philosophy, fiction — stories for every kind of soul. Come as ye are, matey.

You may also like