首页> 外文期刊>Journal of Contaminant Hydrology >Degradation of the herbicide dichlobenil and its metabolite BAM in soils and subsurface sediments
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Degradation of the herbicide dichlobenil and its metabolite BAM in soils and subsurface sediments

机译:除草剂二氯苯腈及其代谢产物BAM在土壤和地下沉积物中的降解

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摘要

The worldwide used herbicide dichlobenil (2,6-dichlorobenzonitrile) has resulted in widespread presence of its metabolite 2,6-dichlorobenzamide (BAM) in surface water and groundwater. To evaluate the potential for natural attenuation of this BAM pollution in groundwater, we studied the degradation of BAM and dichlobenil in 16 samples of clayey till, unconsolidated sand and limestone, including sediments from both oxidized and reduced conditions. The degradation of dichlobenil occurred primarily in the upper few meters below surface, although dichlobenil was strongly sorbed to these sediments. However, the degradation of dichlobenil to BAM could not be correlated to either sorption, water chemistry, composition of soils or sediments. Degradation of dichlobenil to BAM was limited (<2% degraded) in the deeper unsaturated zones, and no degradation was observed in aquifer sediments. This illustrates, that dichlobenil transported to aquifers does not contribute to the BAM-contamination in aquifers. A small, but significant degradation of BAM was observed in the upper part of the unsaturated zones in sandy sediments, but no degradation was observed in the clayey till sediment or in the deeper unsaturated zones. The insignificant degradation of BAM in aquifer systems shows that BAM pollution detected in aquifers will appear for a long time; and consequently the potential for natural attenuation of BAM in aquifer systems is limited.
机译:全世界使用的除草剂二氯苯腈(2,6-二氯苄腈)已导致其代谢物2,6-二氯苯甲酰胺(BAM)在地表水和地下水中广泛存在。为了评估这种BAM污染物在地下水中自然衰减的潜力,我们研究了16种黏性土样,未固结的沙子和石灰石(包括来自氧化和还原条件的沉积物)中BAM和二氯苯腈的降解。敌草腈的降解主要发生在地表以下几米处,尽管敌草腈被强烈吸附在这些沉积物中。然而,二氯苯腈降解成BAM既不与吸附,水化学,土壤或沉积物组成无关。在较深的不饱和区中,二氯苯酚降解为BAM的程度有限(<2%降解),在含水层沉积物中未观察到降解。这说明运输到含水层的二氯苯腈不会导致含水层中的BAM污染。在砂质沉积物的不饱和带上部观察到少量但显着的BAM降解,但直到沉积物或更深的非饱和带,在黏土中均未观察到降解。含水层系统中BAM的微不足道的降解表明,在含水层中检测到的BAM污染将长期存在。因此,含水层系统中BAM自然衰减的潜力是有限的。

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