Zheng Yuan-Ming, Liu Yu-Rong, Hu Hong-Qing, He Ji-Zheng
State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Beijing, China.
Chemosphere. 2008 Jul;72(9):1274-8. doi: 10.1016/j.chemosphere.2008.04.052. Epub 2008 Jun 9.
Mercury (Hg) in the agricultural ecosystem is a global concern because of its high potential toxicity. The objectives of this study were to determine the concentration and distribution of Hg in soils from three long-term experimental stations, i.e., Taoyuan (TY) and Qiyang (QY) in Hunan Province and Fengqiu (FQ) in Henan Province of China, and thus to assess the possible food and health risk of long-term applications of fertilizers. Soil samples at each site were collected from different fertilization plots and also from soil profiles with depths 0-100 cm. There were significant differences in soil Hg concentrations in 0-20 cm (A) or 20-40 cm (B) horizon among the three experimental stations. QY station showed significantly higher Hg concentrations than TY and FQ stations. However, there were no significant differences in soil Hg concentrations between A and B horizons at each station. It was concluded that the soil Hg concentrations at the three sites were mainly controlled by the parent materials. Moreover, chemical fertilizer, especially phosphorous fertilizers, could influence the soil Hg concentrations to some extent at the station with lower soil Hg concentrations, for example, at TY station. There were minimal amounts of Hg resulting from applications of the other chemical fertilizers and organic manure, and thus the fertilization had very low risk to the food security of the agro-ecosystems in the terms of Hg inputs and contamination.
由于其具有高潜在毒性,农业生态系统中的汞(Hg)成为全球关注的问题。本研究的目的是测定来自中国湖南省的桃源(TY)和祁阳(QY)以及河南省的封丘(FQ)这三个长期试验站土壤中汞的浓度和分布,从而评估长期施肥可能带来的食品和健康风险。每个站点的土壤样本分别从不同施肥地块以及深度为0 - 100厘米的土壤剖面采集。三个试验站在0 - 20厘米(A层)或20 - 40厘米(B层)土层的土壤汞浓度存在显著差异。QY站的汞浓度显著高于TY站和FQ站。然而,每个站点A层和B层之间的土壤汞浓度没有显著差异。研究得出结论,这三个站点的土壤汞浓度主要受母质控制。此外,化肥,尤其是磷肥,在土壤汞浓度较低的站点(如TY站)会在一定程度上影响土壤汞浓度。其他化肥和有机肥施用产生的汞量极少,因此就汞输入和污染而言,施肥对农业生态系统的粮食安全风险很低。