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西班牙东南部地表硫化物采矿土壤中的锌迁移率与地球化学

Zn mobility and geochemistry in surface sulfide mining soils from SE Spain.

作者信息

Garcia G, Peñas J M, Manteca J I

机构信息

Soil Science and Agriculture Chemistry Unit, Agriculture Science and Technology Department, Technical University of Cartagena, Paseo de Alfonso XIII 48, 30203-Cartagena, Spain.

出版信息

Environ Res. 2008 Mar;106(3):333-9. doi: 10.1016/j.envres.2007.04.008. Epub 2007 Jun 8.

Abstract

The extraction of metallic minerals and the mineral dressing operations in concentrators produced a high impact in soils and sediments. Heavy metals in soils constitute a high risk of pollution, not only for mining areas, but also for agriculture and villages placed in subsidiary areas. This research has been focused on the assessment of the real environmental and health hazards of Zn in relation to geochemistry and metal mobility in surface soils from a mining area in SE Spain, under semiarid weather conditions. Mineralogy of the studied soils revealed major presence of quartz, but also of other silicates, sulfates, carbonates, and sulfides. Regarding Zn minerals, the presence of sphalerite as the main Zn sulfide, and of goslarite as Zn sulfate, and of smithsonite as Zn carbonate should be highlighted. Soil pH ranged between 4.4 and 4.9 and the electrical conductivity between 55 and 85 microS/cm. By using the sequential extraction procedure, the achieved results show that zinc is not only mainly associated to primary but also to secondary sulfides. Total concentration of the non-available fractions rises up to 98.45% of total Zn in the studied soils. On the other hand, available Zn fraction did not exceed more than 1.55% in percentage and less than 2000 ppm in absolute terms, and when referred to more easily available fraction (water-soluble and exchangeable fractions), these values are not more than 0.44% and then 800 ppm. Therefore, although there is a significant pollution level in this area, immediate hazard for the environment can be assessed as moderate. Finally it should be highlighted that these surface soils have undergone concentration processes of sphalerite, whose mechanisms should be related to the ascending flow of capillary water and the dragging of sphalerite crystals and Zn salts by electrokinetic and colloidal processes These processes seem to occur based on environmental pollution by wind and water erosion, and therefore directly associated to environmental pollution and risks by free metals.

摘要

金属矿物的开采以及选矿厂的选矿作业对土壤和沉积物产生了重大影响。土壤中的重金属不仅对矿区,而且对位于附属区域的农业和村庄构成了高度的污染风险。本研究聚焦于评估西班牙东南部一个矿区表层土壤中锌在地球化学和金属迁移方面的实际环境与健康危害,该地区处于半干旱气候条件下。所研究土壤的矿物学显示,主要存在石英,还有其他硅酸盐、硫酸盐、碳酸盐和硫化物。关于锌矿物,应突出闪锌矿作为主要硫化锌矿物、皓矾作为硫酸锌矿物以及菱锌矿作为碳酸锌矿物的存在。土壤pH值在4.4至4.9之间,电导率在55至85微西门子/厘米之间。通过连续提取程序,所得结果表明锌不仅主要与原生硫化物相关,还与次生硫化物相关。在所研究土壤中,不可利用部分的总浓度高达总锌的98.45%。另一方面,有效锌部分的百分比不超过1.55%,绝对值低于2000 ppm,而当提及更易利用部分(水溶性和可交换部分)时,这些值分别不超过0.44%和800 ppm。因此,尽管该地区存在显著的污染水平,但可评估对环境的直接危害为中度。最后应强调的是,这些表层土壤经历了闪锌矿的富集过程,其机制应与毛细水的上升流以及电动和胶体过程对闪锌矿晶体和锌盐的拖拽有关。这些过程似乎是基于风蚀和水蚀造成的环境污染而发生的,因此与游离金属造成的环境污染和风险直接相关。

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