Institute of Geosciences, Friedrich Schiller University of Jena, Burgweg 11, 07743 Jena, Germany.
Environ Pollut. 2012 Sep;168:96-106. doi: 10.1016/j.envpol.2012.04.016. Epub 2012 May 17.
A quantitative knowledge of the fate of deicing chemicals in the subsurface can be provided by joint analysis of lab experiments with numerical simulation models. In the present study, published experimental data of microbial degradation of the deicing chemical propylene glycol (PG) under flow conditions in soil columns were simulated inversely to receive the parameters of degradation. We evaluated different scenarios of an advection-dispersion model including different terms for degradation, such as zero order, first order and inclusion of a growing and decaying biomass for their ability to explain the data. The general break-through behavior of propylene glycol in soil columns can be simulated well using a coupled model of solute transport and degradation with growth and decay of biomass. The susceptibility of the model to non-unique solutions was investigated using systematical forward and inverse simulations. We found that the model tends to equifinal solutions under certain conditions.
定量了解除冰化学物质在地下的命运,可以通过实验室实验与数值模拟模型的联合分析来提供。在本研究中,我们对在土壤柱中流动条件下微生物降解除冰化学物质丙二醇(PG)的已发表实验数据进行了反演模拟,以获取降解参数。我们评估了包括不同降解项(如零级、一级和包含生长和衰减生物量)的对流-弥散模型的不同情景,以考察它们解释数据的能力。使用溶质运移和降解的耦合模型,包括生物量的生长和衰减,可以很好地模拟丙二醇在土壤柱中的总体穿透行为。使用系统的正向和反向模拟研究了模型对非唯一解的敏感性。我们发现,在某些条件下,模型容易出现等结果解。