Abriola L M, Chen Y M
Department of Civil and Environmental Engineering, University of Michigan, Ann Arbor 48109-2125, USA.
Environ Health Perspect. 1995 Jun;103 Suppl 5(Suppl 5):85-8. doi: 10.1289/ehp.95103s485.
A two-dimensional compositional model is presented; this model describes the transport and biotransformation of organic contaminants in a variably saturated subsurface environment. Modeled processes included mass exchange between constituent phases (water, air, soil, and organisms), advective and dispersive fluxes in the water phase, diffusive flux in the air phase, and biotransformation and biomass production in the biophase. In this model, solute transfer across air/water and water/solid interfaces is modeled using equilibrium relationships. Rate-limited mass transfer between the water and biophases is described with a linear driving force expression. Microbial degradation and biomass net growth are modeled by Monod-type kinetics. Solute transport and microbial growth equations are solved using an iterative Galerkin finite element method with a variable time-weighting scheme. Coupled biophase mass balance equations for each component are solved with a Newton-Raphson iterative scheme. Model capabilities are illustrated with two-dimensional, cross-sectional simulations of natural bioattenuation. The influence of biotransformation processes on the transport and extent of a toluene plume is examined.
提出了一种二维成分模型;该模型描述了可变饱和地下环境中有机污染物的迁移和生物转化。模拟过程包括各组成相(水、空气、土壤和生物体)之间的质量交换、水相中的平流和扩散通量、气相中的扩散通量以及生物相中的生物转化和生物量生产。在该模型中,利用平衡关系对溶质在空气/水和水/固体界面间的转移进行建模。水相和生物相之间的限速传质用线性驱动力表达式描述。微生物降解和生物量净增长用莫诺德型动力学进行建模。溶质迁移和微生物生长方程采用具有可变时间加权方案的迭代伽辽金有限元法求解。各组分的耦合生物相质量平衡方程用牛顿-拉夫逊迭代方案求解。通过自然生物衰减的二维横截面模拟来说明模型的能力。研究了生物转化过程对甲苯羽流迁移和范围的影响。