Waste Science and Technology, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, Luleå SE-97187, Sweden.
Environ Pollut. 2011 Jun;159(6):1536-42. doi: 10.1016/j.envpol.2011.03.005. Epub 2011 Mar 30.
Field plots were established at a timber treatment site to evaluate remediation of Cu contaminated topsoils with aided phytostabilization. Soil containing 2600 mg kg⁻¹ Cu was amended with a combination of 5 wt% compost and 2 wt% iron grit, and vegetated. Sequential extraction was combined with extended X-ray absorption fine structure (EXAFS) spectroscopy to correlate changes in Cu distribution across five fractions with changes in the predominant Cu compounds two years after treatment in parallel treated and untreated field plots. Exchangeable Cu dominated untreated soil, most likely as Cu(II) species non-specifically bound to natural organic matter. The EXAFS spectroscopic results are consistent with the sequential extraction results, which show a major shift in Cu distribution as a result of soil treatment to the fraction bound to poorly crystalline Fe oxyhydroxides forming binuclear inner-sphere complexes.
在木材处理场地设立了野外试验场,以评估辅助植物稳定化技术对 Cu 污染表土的修复效果。土壤中含有 2600mg/kg 的 Cu,用 5wt%的堆肥和 2wt%的铁砂进行改良,并进行植被覆盖。连续提取法与扩展 X 射线吸收精细结构(EXAFS)光谱法相结合,将五种组分中 Cu 分布的变化与处理两年后平行处理和未处理野外试验场中主要 Cu 化合物的变化相关联。可交换态 Cu 是未处理土壤中的主要存在形式,很可能是与天然有机质非特异性结合的 Cu(II)物种。EXAFS 光谱结果与连续提取结果一致,表明由于土壤处理,Cu 的分布发生了重大变化,主要是由于与形成双核内壳配合物的非晶态 Fe 氢氧化物结合的 Cu 组分发生了变化。