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有机松林土层覆盖在受氯酚污染的矿物土层上,可增强污染物的降解。

Layer of organic pine forest soil on top of chlorophenol-contaminated mineral soil enhances contaminant degradation.

机构信息

Department of Environmental Sciences, Section of Environmental Ecology, University of Helsinki, Niemenkatu 73, 15140, Lahti, Finland.

出版信息

Environ Sci Pollut Res Int. 2013 Mar;20(3):1737-45. doi: 10.1007/s11356-012-1047-1. Epub 2012 Jul 1.

Abstract

Chlorophenols, like many other synthetic compounds, are persistent problem in industrial areas. These compounds are easily degraded in certain natural environments where the top soil is organic. Some studies suggest that mineral soil contaminated with organic compounds is rapidly remediated if it is mixed with organic soil. We hypothesized that organic soil with a high degradation capacity even on top of the contaminated mineral soil enhances degradation of recalcitrant chlorophenols in the mineral soil below. We first compared chlorophenol degradation in different soils by spiking pristine and pentachlorophenol-contaminated soils with 2,4,6-trichlorophenol in 10-L buckets. In other experiments, we covered contaminated mineral soil with organic pine forest soil. We also monitored in situ degradation on an old sawmill site where mineral soil was either left intact or covered with organic pine forest soil. 2,4,6-Trichlorophenol was rapidly degraded in organic pine forest soil, but the degradation was slower in other soils. If a thin layer of the pine forest humus was added on top of mineral sawmill soil, the original chlorophenol concentrations (high, ca. 70 μg g(-1), or moderate, ca. 20 μg g(-1)) in sawmill soil decreased by >40 % in 24 days. No degradation was noticed if the mineral soil was kept bare or if the covering humus soil layer was sterilized beforehand. Our results suggest that covering mineral soil with an organic soil layer is an efficient way to remediate recalcitrant chlorophenol contamination in mineral soils. The results of the field experiment are promising.

摘要

氯酚类化合物和许多其他合成化合物一样,是工业区域的一个长期存在的问题。这些化合物在土壤上层为有机物质的某些自然环境中很容易被降解。一些研究表明,如果将受有机化合物污染的矿质土壤与有机土壤混合,那么受污染的矿质土壤会迅速得到修复。我们假设,即使在受污染的矿质土壤之上,具有高降解能力的有机土壤也会增强矿质土壤中难降解氯酚类化合物的降解。我们首先通过在 10 升桶中用 2,4,6-三氯苯酚对原始和五氯酚污染的土壤进行接种,比较了不同土壤中氯酚的降解情况。在其他实验中,我们用有机松林土壤覆盖受污染的矿质土壤。我们还监测了在旧锯木厂场地的原位降解情况,在那里,矿质土壤要么保持原状,要么用有机松林土壤覆盖。2,4,6-三氯苯酚在有机松林土壤中迅速降解,但在其他土壤中的降解速度较慢。如果在矿质锯木厂土壤的顶部添加一层薄薄的松林腐殖质,那么锯木厂土壤中原有的氯酚浓度(高,约 70μg g(-1),或中等,约 20μg g(-1))在 24 天内会降低>40%。如果矿质土壤保持裸露或覆盖的腐殖质土壤层事先进行消毒,则不会观察到降解。我们的结果表明,用有机土壤层覆盖矿质土壤是修复矿质土壤中难降解氯酚污染的有效方法。野外实验的结果很有前景。

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