首页> 外文期刊>Environmental toxicology and chemistry >SPECIATION OF HEAVY METALS IN RECENT SEDIMENTS OF THREE COASTAL ECOSYSTEMS IN THE GULF OF CADIZ, SOUTHWEST IBERIAN PENINSULA
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SPECIATION OF HEAVY METALS IN RECENT SEDIMENTS OF THREE COASTAL ECOSYSTEMS IN THE GULF OF CADIZ, SOUTHWEST IBERIAN PENINSULA

机译:伊比利亚半岛西南部加的斯湾三个沿海生态系统最近沉积物中的重金属形态

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A five-step sequential extraction technique was used to determine the partitioning of Cr, Mn, Fe, Cu, Zn, Cd, and Pb among the operative sedimentary phases (exchangeable ions, carbonates, manganese and iron oxides, sulfides and organic matter, and residual minerals) in coastal sediment from three locations in the southwest Iberian Peninsula. Two sites are located close to industrial areas, the salt marshes of the Odiel River and Bay of Cadiz, and one in a nonindustrial area, the Barbate River salt marshes. The Odiel River salt marshes also receive the drainage from mining activities in the Huelva region. In the sediments from the Bay of Cadiz and Barbate River salt marshes, Cr, Cu, Fe, and Zn were extracted from the residual fraction at percentages higher than 60%. In the sediments from the Odiel River salt marshes, concentrations of all the metals, except Cu, Zn, and Cd, exceeded 60% in the residual fraction as well. In the sediments from the Bay of Cadiz and Barbate River salt marshes, the main bioavailable metals were Mn and Cd; in those from the Odiel River salt marshes, the main bioavailable metals were Zn and Cd, respectively. The environmental risk was determined by employing the environmental risk factor (ERF), defined as ERF = (CSQV - Ci/CSQV), where Ci is the heavy metal concentration in the first four fractions and CSQV is concentration sediment quality value (the highest concentration with no associated biological effect). Our results showed that the sediments from the Cadiz Bay and Barbate River salt marshes do not constitute any environmental risk under the current natural conditions. In contrast, in the Odiel River salt marshes, Cu, Zn, and Pb yielded ERFs of less than zero at several sampling stations and, consequently, pose a potential threat for the organisms in the area. This is a consequence of the high levels of metals in the area derived from the mining activity (pyrite) and industrial activities and the association of these heavy metals with more labile fractions of the sediments.
机译:采用五步顺序萃取技术确定Cr,Mn,Fe,Cu,Zn,Cd和Pb在有效沉积相(可交换离子,碳酸盐,锰和铁的氧化物,硫化物和有机物以及伊比利亚西南半岛三个位置的沿海沉积物中残留的矿物质)。两处地点靠近工业区,分别是奥迪尔河和加的斯湾的盐沼,另一处是非工业区的巴贝特河盐沼。奥迪尔河盐沼也受到韦尔瓦地区采矿活动的排水。在来自加的斯湾和巴贝特河的沉积物中,盐沼中的铬,铜,铁和锌含量均高于60%。在奥迪尔河盐沼的沉积物中,除铜,锌和镉以外的所有金属的浓度也都超过了60%。在加的斯湾和巴贝特河盐沼的沉积物中,主要的生物可利用金属为锰和镉。在奥迪尔河盐沼中,主要的生物利用金属分别为锌和镉。通过使用环境风险因子(ERF)来确定环境风险,ERF定义为ERF =(CSQV-Ci / CSQV),其中Ci是前四个馏分中的重金属浓度,CSQV是浓度沉积物质量值(最高浓度没有相关的生物学效应)。我们的结果表明,在当前的自然条件下,来自加的斯湾和巴贝特河盐沼的沉积物不构成任何环境风险。相反,在奥迪尔河盐沼中,铜,锌和铅在几个采样站产生的ERF小于零,因此对该地区的生物构成了潜在威胁。这是由于该地区开采活动(黄铁矿)和工业活动中金属含量高以及这些重金属与沉积物中不稳定部分相关的结果。

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