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Reactive Transport in Natural and Engineered Systems

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SKU:
9781946850010
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  • Product Details

    Author:
    Jennifer Druhan, Christophe Tournassat, Mineralogical Society of America
    Format:
    Paperback
    Pages:
    514
    Publisher:
    De Gruyter (October 21, 2019)
    Language:
    English
    Audience:
    Professional and scholarly
    ISBN-13:
    9781946850010
    ISBN-10:
    1946850012
    Weight:
    26.88oz
    Dimensions:
    6.1" x 9.06"
    File:
    TWO RIVERS-PERSEUS-Metadata_Only_Perseus_Distribution_Customer_Group_Metadata_20260407163711-20260408.xml
    Folder:
    TWO RIVERS
    List Price:
    $54.99
    Country of Origin:
    Germany
    Series:
    Reviews in Mineralogy & Geochemistry
    As low as:
    $52.24
    Publisher Identifier:
    P-PER
    Discount Code:
    H
    Pub Discount:
    35
    Imprint:
    De Gruyter
  • Overview

    Open system behavior is predicated on a fundamental relationship between the timescale over which mass is transported and the timescale over which it is chemically transformed. This relationship describes the basis for the multidisciplinary field of reactive transport (RT). In the 20 years since publication of Review in Mineralogy and Geochemistry volume 34: Reactive Transport in Porous Media, RT principles have expanded beyond early applications largely based in contaminant hydrology to become broadly utilized throughout the Earth Sciences. RT is now employed to address a wide variety of natural and engineered systems across diverse spatial and temporal scales, in tandem with advances in computational capability, quantitative imaging and reactive interface characterization techniques. The present volume reviews the diversity of reactive transport applications developed over the past 20 years, ranging from the understanding of basic processes at the nano- to micrometer scale to the prediction of Earth global cycling processes at the watershed scale.  Key areas of RT development are highlighted to continue advancing our capabilities to predict mass and energy transfer in natural and engineered systems.