Sustainable Use, Management and Reclamation of Soil and Water Research Group. ETSIA. Universidad Politécnica de Cartagena. Paseo Alfonso XIII, 52, 30230 Cartagena, Spain.
Sustainable Use, Management and Reclamation of Soil and Water Research Group. ETSIA. Universidad Politécnica de Cartagena. Paseo Alfonso XIII, 52, 30230 Cartagena, Spain.
Chemosphere. 2015 Sep;134:328-37. doi: 10.1016/j.chemosphere.2015.04.038. Epub 2015 May 15.
Street dust and soil from high, medium and low populated cities and natural area were analysed for selected physical-chemical properties, total and chemical speciation of Zn, Pb, Cu, Cr, Cd, Co, Ni to understand the influence of human activities on metal accumulation and mobility in the environment. The pH, salinity, carbonates and organic carbon contents were similar between soil and dust from the same city. Population density increases dust/soil salinity but has no influence on metals concentrations in soils. Increases in metal concentrations with population density were observed in dusts. Cu, Zn, Pb, Cr can be mobilized more easily from dust compared to the soil. In addition, population density increase the percentage of Pb and Zn associated to reducible and carbonate phase in the dust. The behaviour of metals except Cd in soil is mainly affected by physico-chemical properties, while total metal influenced the speciation except Cr and Ni in dusts.
从人口密度高、中、低的城市和自然区域采集街道灰尘和土壤样本,分析其选定的物理化学性质、Zn、Pb、Cu、Cr、Cd、Co、Ni 的总量和化学形态,以了解人类活动对金属在环境中积累和迁移的影响。同一城市的土壤和灰尘之间的 pH 值、盐分、碳酸盐和有机碳含量相似。人口密度的增加会提高灰尘/土壤的盐分,但对土壤中的金属浓度没有影响。在灰尘中观察到金属浓度随人口密度增加而增加。与土壤相比,Cu、Zn、Pb、Cr 更容易从灰尘中被迁移。此外,人口密度增加了灰尘中与可还原和碳酸盐相结合的 Pb 和 Zn 的比例。除 Cd 以外的金属在土壤中的行为主要受物理化学性质的影响,而总金属则影响除 Cr 和 Ni 以外的灰尘中的形态。