arrow
Return

Community Data Mining Approach for Surface Complexation Database Development

delete2022-02-01
delete14
delete
OA
AI
M
Mavrik Zavarin
E
Elliot Chang *
H
Haruko Wainwright
N
Nicholas Parham
R
Rahul Kaukuntla
J
Jadallah Zouabe
A
Amanda Deinhart
V
Victoria Genetti
S
Sam Shipman
F
Frank Bok
V
Vinzenz Brendler
DOI:10.1021/acs.est.1c07109delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper presents a comprehensive data-to-model workflow, including a findable, accessible, interoperable, reusable (FAIR) community sorption database (newly developed LLNL Surface Complexation/Ion Exchange (L-SCIE) database) along with a data fitting workflow to efficiently optimize surface complexation reaction constants with multiple surface complexation model (SCM) constructs. This workflow serves as a universal framework to mine, compile, and analyze large numbers of published sorption data as well as to estimate reaction constants for parameterizing reactive transport models. The framework includes (1) data digitization from published papers, (2) data unification including unit conversions, and (3) data-model integration and reaction constant estimation using geochemical software PHREEQC coupled with the universal parameter estimation code PEST. We demonstrate our approach using an analysis of U(VI) sorption to quartz based on a first L-SCIE implementation, concluding that a multisite SCM construct with carbonate surface species yielded the best fit to community data. Surface complexation reaction constants extracted from this approach captured all available sorption data available in the literature and provided insight into previously published reaction constants and surface complexation model constructs. The L-SCIE sorption database presented herein allows for automating this approach across a wide range of metals and minerals and implementing novel machine learning approaches to reactive transport in the future.
Keywords:
community data
surface complexation modeling
database
sorption
adsorption

Journal

E
Environmental Science and Technology
IF:
11.3
Papers:
4.3W
Citations:
26.0W

Organization

U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246
University of California System cover
University of California System
Scholars:
37.7W
Papers: 33.8W
Citations: 6.6K
Cited Papers

Cited Papers

Moriz Kaposi
err2013-01-01
err0
PREAI
errMax Hundeiker
errShare
errSave
Sorption of uranium(VI) onto phyllite
err1998-10-01
err114
PREAI
errArnold, T; Zorn, T; Bernhard, G; Nitsche, H
errShare
errSave
William Tilbury Fox
err2013-01-01
err0
PREAI
errNick J. Levell
errShare
errSave
Analysis of phosphate adsorption onto ferrihydrite using the CD-MUSIC model
err2010-07-01
err198
PREAI
errAntelo, Juan; Fiol, Sarah; Perez, Claudio; Marino, Silvia; Arce, Florencio; Gondar, Dora; Lopez, Rocio
errShare
errSave
Self-Report Measure of Financial Exploitation of Older Adults
err2010-07-28
err0
errOAAI
errK. J. Conrad; M. Iris; J. W. Ridings; K. Langley; K. H. Wilber
errShare
errSave
Learning properties of ordered and disordered materials from multi-fidelity data
err2021-01-14
err136
errOAAI
errChen, Chi; Zuo, Yunxing; Ye, Weike; Li, Xiangguo; Ong, Shyue Ping
errShare
errSave
100 Citation Classics in the Melanoma Literature
err2014-12-01
err0
PREAI
errCormac W. Joyce; Conor M. Sugrue; Kenneth M. Joyce; Jack L. Kelly; Padraic J. Regan
errShare
errSave
researcher View more