Larsbo Mats, Fenner Kathrin, Stoob Krispin, Burkhardt Michael, Abbaspour Karim, Stamm Christian
Swiss Federal Inst. for Aquatic Science and Technology (Eawag), Ueberlandstrasse 133, Duebendorf, Switzerland.
J Environ Qual. 2008 May 2;37(3):788-97. doi: 10.2134/jeq2007.0432. Print 2008 May-Jun.
To prevent residues of veterinary medicinal products (VMPs) from contaminating surface waters and ground water, an environmental impact assessment is required before a new product is allowed on the market. Physically based simulation models are advocated for the calculation of predicted environmental concentrations at higher tiers of the assessment process. However, the validation status of potentially useful models is poor for VMP transport. The objective of this study was to evaluate the dual-permeability model MACRO for simulation of transport of sulfonamide antibiotics in surface runoff and soil. Special focus was on effects of solute application in liquid manure, which may alter the hydraulic properties at the soil surface. To this end we used data from a microplot runoff experiment and a field experiment, both conducted on the same clay loam soil prone to preferential flow. Results showed that the model could accurately simulate concentrations of sulfadimidine and the nonreactive tracer bromide in runoff and in soil from the microplot experiments. The use of posterior parameter distributions from calibrations using the microplot data resulted in poor simulations for the field data of total sulfadimidine losses. The poor results may be due to surface runoff being instantly transferred off the field in the model, whereas in reality re-infiltration may occur. The effects of the manure application were reflected in smaller total and micropore hydraulic conductivities compared with the application in aqueous solution. These effects could easily be accounted for in regulatory modeling.
为防止兽药残留污染地表水和地下水,在新产品获准上市前需进行环境影响评估。在评估过程的较高层级,提倡使用基于物理的模拟模型来计算预测环境浓度。然而,对于兽药运输而言,潜在有用模型的验证状况不佳。本研究的目的是评估双渗透率模型MACRO对磺胺类抗生素在地表径流和土壤中迁移的模拟效果。特别关注了液体粪肥中溶质施用的影响,这可能会改变土壤表面的水力特性。为此,我们使用了在同一块易于产生优先流的粘壤土上进行的微区径流实验和田间实验的数据。结果表明,该模型能够准确模拟微区实验中径流和土壤中磺胺二甲嘧啶以及非反应性示踪剂溴化物的浓度。使用基于微区数据校准得到的后验参数分布对田间数据中磺胺二甲嘧啶总损失量的模拟效果较差。结果不佳可能是由于模型中地表径流立即从田间转移出去,而实际中可能会发生再入渗。与水溶液施用相比,粪肥施用的影响表现为总水力传导率和微孔水力传导率较小。在监管建模中可以很容易地考虑到这些影响。