首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Partitioning geochemistry of arsenic and antimony, El Tatio Geyser Field, Chile
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Partitioning geochemistry of arsenic and antimony, El Tatio Geyser Field, Chile

机译:智利El Tatio间歇泉油田对砷和锑的地球化学划分

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摘要

The abundance of As and Sb in aqueous, mineral and biological reservoirs was examined at El Tatio Geyser Field, a unique hydrothermal basin located in the Atacama Desert region of Chile. Here the concentration of total As and Sb in hydrothermal springs and discharge streams are the highest reported for a natural surface water, and the geyser basin represents a significant source of toxic elements for downstream users across Region II, Chile. The geyser waters are near neutral Na:Cl type with similar to 0.45 and 0.021 mmol L-1 total As and Sb, respectively, primarily in the reduced (III) redox state at the discharge with progressive oxidation downstream. The ferric oxyhydroxides associated with the microbial mats and some mineral precipitates accumulate substantial As that was identified as arsenate by XAS analysis (>10 wt% in the mats). This As is easily mobilized by anion exchange or mild dissolution of the HFO, and the ubiquitous microbial mats represent a significant reservoir of As in this system. Antimony, in contrast, is not associated with the mineral ferric oxides or the biomats, but is substantially enriched in the silica matrix of the geyserite precipitates, up to 2 wt% as Sb2O3. Understanding the mobility and partitioning behavior of these metalloids is critical for understanding their eventual impact on regional water management.
机译:在El Tatio Geyser油田(位于智利阿塔卡马沙漠地区的一个独特的热液盆地)检查了水,矿产和生物储层中As和Sb的丰度。在这里,热液泉水和排放流中总As和Sb的浓度是天然地表水的最高记录,而间歇泉盆地是智利第二区域下游用户重要的有毒元素来源。间歇泉水接近中性的Na:Cl型,分别与总的Al和Sb分别为0.45和0.021 mmol L-1相似,主要是在放电时处于还原(III)氧化还原状态,并逐渐向下游氧化。与微生物垫相关的羟基氧化铁和一些矿物质沉淀物大量积累,通过XAS分析鉴定为砷酸盐(在垫中> 10 wt%)。这种砷很容易通过阴离子交换或HFO的适度溶解而动员起来,而无处不在的微生物垫则代表了该系统中大量的砷。相反,锑与矿物三氧化二铁或生物垫层无关,但基本上富含矿物质的二氧化硅骨架,含量高达Sb2O3的2 wt%。了解这些准金属的迁移和分配行为对于了解它们最终对区域水管理的影响至关重要。

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