首页> 外文期刊>Environmental toxicology and chemistry >ESTABLISHING THE IMPACT OF ACID MINE DRAINAGE THROUGH METAL BIOACCUMULATION AND TAXA RICHNESS OF BENTHIC INSECTS IN A TROPICAL ASIAN STREAM (THE PHILIPPINES)
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ESTABLISHING THE IMPACT OF ACID MINE DRAINAGE THROUGH METAL BIOACCUMULATION AND TAXA RICHNESS OF BENTHIC INSECTS IN A TROPICAL ASIAN STREAM (THE PHILIPPINES)

机译:通过热带亚热带(菲律宾)的底栖昆虫的金属生物富集和税收富集来确定酸矿流失的影响

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摘要

The Boac-Makulapnit River (The Philippines) is contaminated with heavy metals primarily due to acid mine drainage (AMD). Heavy-metal levels in river water, sediment, and algae suggest that Cu is the primary contaminant in this system. Copper concentrations decrease longitudinally, indicating a contamination gradient away from the mine. This is also reflected in the whole-body metal concentration of the caddisfly Hydropsyche, wherein higher Cu levels are observed in upstream stations (677-980 μg/g in 2001). In 2002, AMD formation was observed in a midstream station resulting from the oxidation of mine tailings in floodplains deposited during a 1996 tailings spill event. This consequently increased heavy-metal concentrations locally in environmental media and is likewise perceived to have caused the absence of aquatic insects in the midstream reach. Copper concentrations also increased in Hydropsyche found downstream of the new AMD site during this year. Furthermore, even the lower Cu concentrations in Hydropsyche observed in downstream stations are still at least six times higher than the established regional baseline value (29.9μg/g), which is calculated from samples from clean tributary streams. These tributary streams also showed higher taxa richness for aquatic insect community in riffle zones. Both biomonitoring tools suggest that the whole length of the river is severely impacted. Rehabilitation projects will be underway next year; therefore, such monitoring programs will truly be beneficial when gauging river habitat recovery.
机译:Boac-Makulapnit河(菲律宾)主要是由于酸性矿井排水(AMD)所污染而被重金属污染。河流水,沉积物和藻类中的重金属含量表明,铜是该系统中的主要污染物。铜浓度沿纵向降低,表明远离矿山的污染梯度。这也体现在水飞蛾的体内全金属浓度上,其中上游站的铜含量较高(2001年为677-980μg/ g)。 2002年,在中流站观察到AMD形成,这是由于1996年尾矿溢出事件中沉积的洪泛区中矿尾矿的氧化所致。因此,这增加了环境介质中局部的重金属浓度,同样被认为已导致中游河段没有水生昆虫。今年,在新AMD站点下游发现的Hydropsyche中的铜浓度也有所增加。此外,即使在下游站观测到的Hydropsyche中较低的Cu浓度仍至少比从清洁支流样品计算得出的确定的区域基线值(29.9μg/ g)高至少六倍。这些支流对浅滩地区的水生昆虫群落也显示出更高的分类单元丰富性。两种生物监测工具都表明,这条河的全长受到严重影响。修复项目将于明年进行;因此,这种监测程序在衡量河流生境恢复时将真正有益。

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