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Explicit finite-difference solution of two-dimensional solute transport with periodic flow in homogenous porous media

., Volker, R.E., 1983. Numerical solutions for solute transport in unconfined aquifers. Int. J. Numer. Meth. Fluids, 3, 103-123. Holly, F.M., Usseglio-Polatera, J.M., 1984. Dispersion simulation in two-dimensional tidal flow. J. Hydraul. Eng., 111, 905-926. Huang, Q., Huang, G., Zhan, H., 2008. A finite element solution for the fractional advection-dispersion equation. Adv. Water Resour., 31, 1578-1589. Jaiswal, D.K., Kumar, A., Kumar, N., Yadav, R.R., 2009. Analytical solutions for temporally and spatially dependent solute

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The HPx software for multicomponent reactive transport during variably-saturated flow: Recent developments and applications

REFERENCES Aagaard, P., Helgeson, H.C., 1982. Thermodynamic and kinetic constraints on reaction rates among minerals and aqueous solutions, 1. Theoretical considerations. Am. J. Sci., 282, 237–285. Amos, R.T., Mayer, K.U., 2006. Investigating the role of gas bubble formation and entrapment in contaminated aquifers: Reactive transport modelling. J. Cont. Hydrol., 87, 123–154. Appelo, C.A.J., Parkhurst, D.L., Post, V.E.A., 2014. Equations for calculating hydrogeochemical reactions of minerals and gases such as CO 2 at high pressures and

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Occurrence and spatial pattern of water repellency in a beech forest subsoil

REFERENCES Adamson, A.W., 1990. Physical Chemistry of Surfaces. 5 th ed. John Wiley & Sons, New York. Ad-hoc-Arbeitsgruppe Boden, 2005. Bodenkundliche Kartieranleitung. [Soil Mapping Manual]. 5 th ed. Federal Institute for Geosciences and Natural Resources in cooperation with the Geological Services of the Federal States, Hannover. (In German.) Anderson, M.A., Hung, A.Y.C., Mills, D., Scott, M.S., 1995. Factors affecting the surface tension of soil solutions and solutions of humic acids. Soil Sci., 160, 111–116. Bachmann, J., Woche, S

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