Environment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, China.
Key Laboratory of Integrated Pest Management on Tropical Crops, Ministry of Agriculture, Haikou, 571101, China.
Environ Sci Pollut Res Int. 2018 Mar;25(8):7968-7977. doi: 10.1007/s11356-017-1130-8. Epub 2018 Jan 4.
Up to hundreds of milligrams per kilogram (dry weight) of nonylphenol (NP) reportedly entered the soil and sediment through the agricultural reuse of biosolids, pesticide application, etc. Organic pollutants in soil could not only further trigger groundwater contamination via leaching (that highly depends upon sorption-desorption and degradation phenomena) but also harm food safety by crop uptake (that mainly rests with the bioavailability of pollutants in soil). Thus, we first investigated the effects of earthworm casts (EWCs) on the sorption-desorption, degradation, and bioavailability of NP in soil under laboratory microcosm conditions, and then, analyzed the FT-IR spectra of EWC and soil samples (with and without EWC). The application of EWC could notably increase the sorption capacity of soils for NP and in turn significantly inhibited the desorption of NP from soil; responsively lengthened the half-time of NP in the soil; and reduced the uptake and translocation of NP in tomato seedlings and promoted their growth during the first 3 weeks. Finally, FT-IR spectra of EWC and soil samples indicated that the application of EWC increased the content of N, P, and organic matter in soil.
据报道,通过农业再利用生物固体、农药应用等途径,多达数百毫克/千克(干重)的壬基酚(NP)进入土壤和沉积物。土壤中的有机污染物不仅可以通过淋滤(高度依赖于吸附-解吸和降解现象)进一步引发地下水污染,还可以通过作物吸收(主要取决于土壤中污染物的生物利用度)危害食品安全。因此,我们首先在实验室微宇宙条件下研究了蚯蚓粪便(EWC)对土壤中 NP 的吸附-解吸、降解和生物利用度的影响,然后分析了 EWC 和土壤样品(有和没有 EWC)的傅里叶变换红外(FT-IR)光谱。EWC 的应用可以显著增加土壤对 NP 的吸附能力,从而显著抑制 NP 从土壤中的解吸;相应地延长 NP 在土壤中的半衰期;并减少 NP 在番茄幼苗中的吸收和转运,并在最初的 3 周内促进其生长。最后,EWC 和土壤样品的 FT-IR 光谱表明,EWC 的应用增加了土壤中氮、磷和有机质的含量。