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首页> 外文期刊>The Science of the Total Environment >Modelling the fate of PAH added with composts in amended soil according to the origin of the exogenous organic matter
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Modelling the fate of PAH added with composts in amended soil according to the origin of the exogenous organic matter

机译:根据外源有机物的来源模拟在改良土壤中添加堆肥的PAH的命运

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AbstractA new model that was able to simulate the behaviours of polycyclic aromatic hydrocarbons (PAH) during composting and after the addition of the composts to agricultural soil is presented here. This model associates modules that describe the physical, biological and biochemical processes involved in PAH dynamics in soils, along with a module describing the compost degradation resulting in PAH release. The model was calibrated from laboratory incubations using three14C-PAHs, phenanthrene, fluoranthene and benzo(a)pyrene, and three different composts consisting of two mature and one non-mature composts. First, the labelled PAHs were added to the compost over 28days, and spiked composts were then added to the soil over 55days. The model calculates the proportion of biogenic and physically bound residues in the non-extractable compartment of PAHs at the end of the compost incubation to feed the initial conditions of the model for soil amended with composts. For most of the treatments, a single parameter set enabled to simulate the observed dynamics of PAHs adequately for all the amended soil treatments using a Bayesian approach. However, for fluoranthene, different parameters that were able to simulate the growth of a specific microbial biomass had to be considered for mature compost. Processes that occurred before the compost application to the soil strongly influenced the fate of PAHs in the soil. Our results showed that the PAH dissipation during compost incubation was higher in mature composts because of the higher specific microbial activity, while the PAH dissipation in amended soil was higher in the non-mature compost because of the higher availability of PAHs and the higher co-metabolic microbial activity.Graphical abstractDisplay OmittedHighlightsThe model simulates the release of PAH from compost in soil according to organic carbon degradation.Processes that occur before compost application to the soil influenced the fate of PAHs in the soil.The PAH dissipation was higher in incubations of mature composts.The PAH dissipation was higher in incubations of soil amended with non-mature composts.The model calculates the proportion of biogenic and physically bound residues of PAHs.
机译: 摘要 一个新模型能够模拟堆肥过程中以及将堆肥添加到农业中后多环芳烃(PAH)的行为这里介绍了土壤。该模型关联了描述土壤中PAH动态的物理,生物和生化过程的模块,以及描述导致PAH释放的堆肥降解的模块。该模型是使用3种 14 C-PAHs,菲,荧蒽和苯并(a)and以及三种不同的堆肥(由两种成熟的和一种)组成的实验室培养物进行校准的非成熟堆肥。首先,在28天之内将标记的PAHs添加到堆肥中,然后在55天中将加标的堆肥添加到土壤中。该模型计算堆肥培养结束时PAHs不可提取隔室中生物和物理结合的残留物的比例,以为模型的初始条件供料以堆肥改良土壤。对于大多数处理,使用贝叶斯方法,单个参数集就可以对所有修正的土壤处理充分地模拟观察到的PAHs动态。但是,对于荧蒽,对于成熟的堆肥,必须考虑能够模拟特定微生物生物量生长的不同参数。在堆肥施用到土壤之前发生的过程强烈影响了土壤中多环芳烃的命运。我们的结果表明,由于较高的比微生物活性,成熟堆肥中堆肥过程中的PAH耗散较高,而非成熟堆肥中改良土壤中的PAH耗散较高,这是因为PAHs的利用率较高,且堆肥的较高。代谢微生物活性。 图形摘要 省略显示 < / ce:abstract-sec> 突出显示 该模型根据有机碳降解模拟了土壤堆肥中PAH的释放。 在将肥料施用到土壤之前发生的过程影响了土壤中PAHs的命运。 在成熟的堆肥中孵育时,PAH耗散较高。 在用未成熟的堆肥改良的土壤中培养时,PAH耗散较高。 该模型计算出PAHs的生物和物理结合残基的比例。

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