The GWB package was originally developed at the Department of Geology of the University of Illinois at Urbana-Champaign over a period of more than twenty years, under the sponsorship initially of a consortium of companies and government laboratories and later through license fees paid by a community of users. In 2011, the GWB development team moved to the Research Park at the University of Illinois, where they operate as an independent company named Aqueous Solutions LLC. Since its release, over 3,000 copies have been licensed in 64 countries. In 2014, a free Student Edition of the software was released. An early version of the software was one of the first applications of parallelvector computing, the predecessor to today's multi-core processors, to geological research. The current release is multithreaded, and as such retains features of the early parallel vector architecture.
Overview
The GWB is an integrated geochemical modeling package used for balancing chemical reactions, calculating stability diagrams and the equilibrium states of natural waters, tracing reaction processes, modelingreactive transport, plotting the results of these calculations, and storing the related data. The Workbench, designed for personal computers running MS Windows, is distributed commercially in three packages: GWB Professional, Standard, and Essentials, as well as in the free [|GWB Student Edition]. GWB reads datasets of thermodynamicequilibrium constants with which it can calculate chemical equilibria. Thermodynamic datasets from other popular programs like PHREEQC, WATEQ4F, and Visual MINTEQ have been formatted for the GWB, enabling comparison and validation of the different codes. The program K2GWB was written to generate thermodynamic data for GWB under pressures and temperatures beyond the limits of the default datasets. The GWB can couple chemical reaction with hydrologic transport to produce simulations known as reactive transport models. GWB can calculate flow fields dynamically, or import flow fields as numeric data or calculated directly from the USGS hydrologic flow code MODFLOW.
Hundreds of scholarly articles cite or use GWB and several textbooks apply the software to solve common problems in environmental protection and remediation, the petroleum industry, and economic geology. Geochemistry students can save time performing routine but tedious tasks that are easily accomplished with the software. Instead of balancing chemical reactions and constructing Eh-pH diagrams by hand, for example, students can spend time exploring advanced topics like multi-component equilibrium, kinetic theory, or reactive transport. Students can apply for a free download of The Geochemist's Workbench Student Edition from the developer's website.