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Weathering of Sulfidic Shale and Copper Mine Waste: Secondary Minerals and Metal Cycling in Great Smoky Mountains National Park, Tennessee, and North Carolina, USA

机译:硫化页岩和铜矿废弃物的风化:美国田纳西州和北卡罗来纳州大烟山国家公园的次生矿物和金属循环

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摘要

Metal cycling via physical and chemical weathering of discrete sources (copper mines) and regional (non-point) sources (sulfide-rich shale) is evaluated by examining the mineralogy and chemistry of weathering products in Great Smoky Mountains National Park, Tennessee, and North Carolina, USA. The elements in copper mine waste, secondary minerals, stream sediments, and waters that are most likely to have negative impacts on aquatic ecosystems are aluminum, copper, zinc, and arsenic because these elements locally exceed toxicity guidelines for surface waters or for stream sediments. Acid-mine drainage has not developed in streams draining inactive copper mines. Acid-rock drainage and chemical weathering processes that accompany debris flows or human disturbances of sulfidic rocks are comparable to processes that develop acid-mine drainage elsewhere. Despite the high rainfall in the mountain range, sheltered areas and intermittent dry spells provide local venues for development of secondary weathering products that can impact aquatic ecosystems.
机译:通过检查大烟山国家公园,田纳西州和北部的风化产物的矿物学和化学性质,评估了通过离散源(铜矿)和区域性(非点源)(富含硫化物的页岩)的物理和化学风化作用进行的金属循环。美国卡罗来纳州。铜矿废料,次要矿物质,河流沉积物中和水中最可能对水生生态系统产生负面影响的元素是铝,铜,锌和砷,因为这些元素局部超过了地表水或河流沉积物的毒性指标。排水非活性铜矿的水流尚未开发出来。伴随泥石流或人为干扰的硫化岩石的酸岩排水和化学风化过程,可与其他地方进行酸矿排水的过程相比。尽管山脉上有很高的降雨,但庇护区和间歇性的干旱期为当地发展可能影响水生生态系统的二次风化产物提供了场所。

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