Hauck Mara, Huijbregts Mark A J, Armitage James M, Cousins Ian T, Ragas Ad M J, van de Meent Dik
Department of Environmental Sciences, Institute for Water and Wetland Research, Radboud University Nijmegen, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands.
Chemosphere. 2008 Jun;72(6):959-67. doi: 10.1016/j.chemosphere.2008.03.014. Epub 2008 Apr 25.
This paper evaluates the contribution of (i) uncertainty in substance properties, (ii) lack of spatial variability, (iii) intermodel differences and (iv) neglecting sorption to black carbon (BC) to the uncertainty of Benzo[a]pyrene (BaP) concentrations in European air, soil and fresh water predicted by the multi-media fate model Simplebox. Uncertainty in substance properties was quantified using probabilistic modeling. The influence of spatial variability was quantified by estimating variation in predicted concentrations with three spatially explicit fate models (Impact 2002, EVn BETR and BETR Global). Intermodel differences were quantified by comparing concentration estimates of Simplebox, Impact 2002, EVn BETR and the European part of BETR Global. Finally, predictions of a BC-inclusive version of Simplebox were compared with predictions of a BC-exclusive version. For air concentrations of BaP, the lack of spatial variability in emissions was most influential. For freshwater concentrations of BaP, intermodel differences and lack of spatial variability in dimensions of fresh water bodies were the dominant sources of uncertainty. For soil, all sources of uncertainty were of comparable magnitude. Our results indicate that uncertainty in Simplebox can be as large as three orders of magnitude for BaP concentrations in the environment and would be substantially underestimated by focusing on one source of uncertainty only.
本文评估了以下因素对通过多介质归宿模型Simplebox预测的欧洲空气、土壤和淡水中苯并[a]芘(BaP)浓度不确定性的贡献:(i)物质属性的不确定性;(ii)缺乏空间变异性;(iii)模型间差异;(iv)忽略对黑碳(BC)的吸附。使用概率模型对物质属性的不确定性进行了量化。通过用三个空间明确的归宿模型(Impact 2002、EVn BETR和BETR Global)估计预测浓度的变化,对空间变异性的影响进行了量化。通过比较Simplebox、Impact 2002、EVn BETR和BETR Global欧洲部分的浓度估计值,对模型间差异进行了量化。最后,将包含BC的Simplebox版本的预测结果与不包含BC的版本的预测结果进行了比较。对于BaP的空气浓度,排放缺乏空间变异性的影响最大。对于BaP的淡水浓度,模型间差异和淡水水体维度缺乏空间变异性是不确定性的主要来源。对于土壤,所有不确定性来源的影响程度相当。我们的结果表明,对于环境中BaP的浓度,Simplebox中的不确定性可能高达三个数量级,仅关注一个不确定性来源会导致对其的严重低估。