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Title: Flow effects on silicate dissolution and ion transport at an aqueous interface

Abstract

Combination of the classical density functional theory with kinetics modeling and the Navier–Stokes equation enables a quantitative description of the convoluted effects of fluid flow, surface reactions, interfacial structure and mass transport.

Authors:
ORCiD logo [1];  [2]; ORCiD logo [3]; ORCiD logo [4]
  1. State Key Laboratory of Chemical Engineering, and School of Chemistry and Molecular Engineering, East China University of Science and Technology; Shanghai; P. R. China; Department of Chemical and Environmental Engineering, University of California; Riverside
  2. Department of Chemical Engineering, Stanford University; USA
  3. State Key Laboratory of Chemical Engineering, and School of Chemistry and Molecular Engineering, East China University of Science and Technology; Shanghai; P. R. China
  4. Department of Chemical and Environmental Engineering, University of California; Riverside; USA
Publication Date:
Research Org.:
Energy Frontier Research Centers (EFRC) (United States). Fluid Interface Reactions, Structures and Transport Center (FIRST); UT-Battelle LLC/ORNL, Oak Ridge, TN (Unted States)
Sponsoring Org.:
USDOE Office of Science (SC), Basic Energy Sciences (BES) (SC-22)
OSTI Identifier:
1566648
DOE Contract Number:  
AC05-00OR22725
Resource Type:
Journal Article
Journal Name:
Physical Chemistry Chemical Physics. PCCP (Print)
Additional Journal Information:
Journal Volume: 21; Journal Issue: 13; Journal ID: ISSN 1463-9076
Publisher:
Royal Society of Chemistry
Country of Publication:
United States
Language:
English
Subject:
catalysis (heterogeneous), solar (fuels), energy storage (including batteries and capacitors), hydrogen and fuel cells, electrodes - solar, mechanical behavior, charge transport, materials and chemistry by design, synthesis (novel materials)

Citation Formats

Lian, Cheng, Kong, Xian, Liu, Honglai, and Wu, Jianzhong. Flow effects on silicate dissolution and ion transport at an aqueous interface. United States: N. p., 2019. Web. doi:10.1039/c9cp00640k.
Lian, Cheng, Kong, Xian, Liu, Honglai, & Wu, Jianzhong. Flow effects on silicate dissolution and ion transport at an aqueous interface. United States. doi:10.1039/c9cp00640k.
Lian, Cheng, Kong, Xian, Liu, Honglai, and Wu, Jianzhong. Tue . "Flow effects on silicate dissolution and ion transport at an aqueous interface". United States. doi:10.1039/c9cp00640k.
@article{osti_1566648,
title = {Flow effects on silicate dissolution and ion transport at an aqueous interface},
author = {Lian, Cheng and Kong, Xian and Liu, Honglai and Wu, Jianzhong},
abstractNote = {Combination of the classical density functional theory with kinetics modeling and the Navier–Stokes equation enables a quantitative description of the convoluted effects of fluid flow, surface reactions, interfacial structure and mass transport.},
doi = {10.1039/c9cp00640k},
journal = {Physical Chemistry Chemical Physics. PCCP (Print)},
issn = {1463-9076},
number = 13,
volume = 21,
place = {United States},
year = {2019},
month = {1}
}

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