Attanayake Chammi P, Hettiarachchi Ganga M, Ma Qing, Pierzynski Gary M, Ransom Michel D
J Environ Qual. 2017 Nov;46(6):1215-1224. doi: 10.2134/jeq2017.02.0065.
In situ soil amendments can modify the Pb bioavailability by changing soil Pb speciation. Urban soils from three vegetable gardens containing different total Pb concentrations were used. The study evaluated how compost amendment and aging of soil-compost mixture in situ affected the following: (i) soil Pb speciation in the field and (ii) change of soil Pb speciation during an in vitro bioaccessibility extraction mimicking gastric phase dissolution at pH 2.5. X-ray absorption fine structure spectroscopy was used to determine Pb speciation in amended and nonamended soils and residues left after in vitro bioaccessibility extraction of those soils. Compost amendment and aging of compost in the field had a negligible effect on Pb bioaccessibility in the soils. Major Pb species in the soils were Pb sorbed to Fe oxy(hydr)oxide (Pb-Fh) and to soil organic C (Pb-Org). The fraction of Pb-Org was increased as soil-compost mixture aged in the field. During the in vitro extraction, the fraction of Pb-Fh was decreased, the fraction of Pb-Org was increased, and hydroxypyromorphite was formed in both amended and nonamended soils. Freshly incorporated compost enhanced the dissolution of Pb-Fh during the extraction. As soil-compost mixture aged in the field, the dissolution of Pb-Fh was low, demonstrating more stability of the Pb-Fh during the extraction. Compost amendment showed potential to contribute to reduced bioaccessibility of Pb as compost aged in the soil by increasing Pb-Org fraction in the field and stability of Pb-Fh during the in vitro bioaccessibility extraction.
原位土壤改良剂可通过改变土壤铅的形态来改变铅的生物有效性。本研究使用了来自三个总铅浓度不同的菜园的城市土壤。该研究评估了堆肥改良以及土壤-堆肥混合物在原位老化对以下方面的影响:(i)田间土壤铅的形态;(ii)在模拟pH 2.5胃相溶解的体外生物可及性提取过程中土壤铅形态的变化。采用X射线吸收精细结构光谱法测定改良和未改良土壤以及这些土壤体外生物可及性提取后残留的铅形态。田间堆肥改良和堆肥老化对土壤中铅的生物可及性影响可忽略不计。土壤中的主要铅形态是吸附在铁氧(氢)氧化物上的铅(Pb-Fh)和土壤有机碳上的铅(Pb-Org)。随着土壤-堆肥混合物在田间老化,Pb-Org的比例增加。在体外提取过程中,Pb-Fh的比例降低,Pb-Org的比例增加,并且在改良和未改良土壤中均形成了羟基磷灰石。新添加的堆肥在提取过程中增强了Pb-Fh的溶解。随着土壤-堆肥混合物在田间老化,Pb-Fh的溶解较低,表明在提取过程中Pb-Fh的稳定性更高。堆肥改良显示出随着堆肥在土壤中老化,通过增加田间Pb-Org比例以及在体外生物可及性提取过程中提高Pb-Fh的稳定性,有可能降低铅的生物可及性。