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Predicting Water Quality Trends in Lone Tree Pit Lake, Nevada (USA)

机译:预测内华达州孤树盆湖泊水质趋势(美国)

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Lone Tree pit lake became acidic during groundwater recovery at a gold mine in Nevada. Alkalinity was added periodically to shift the lake to a neutral pH. Improved knowledge of the pit lake's sources of acidity was essential for water quality prediction. The primary source of acidity and metals at Lone Tree appears to be dissolution of chemical loads by groundwater flowing through sulfide-enriched rocks exposed in the highwall. About 60% of the highwall consisted of potentially acid-generating rock based on analysis of sulfur and carbon in blast-hole samples collected during mining. Analysis of acid ingress over time indicated that complete oxidation of about 2.3 m of highwall would account for the sulfate and acidity mass balance in the pit lake. In addition, the analysis showed that chemical loading stored in the submerged highwall was likely released over many years by influent groundwater. A synthetic rinsing curve was calibrated against measured water quality to simulate chemical releases from the weathered rock.
机译:在内华达州的金矿地下水回收期间,孤树坑湖成为酸性。周期性加入碱度以将湖泊变为中性pH值。改进了对坑湖的酸度来源的知识对于水质预测至关重要。在储存树上的酸度和金属的主要来源似乎是通过在高壁中暴露的硫化物富含硫化物的岩石流动的地下水来溶解化学载荷。大约60%的高壁基于在采矿过程中收集的漏洞样品中的硫和碳分析的潜在酸产生的岩石组成。随着时间的推移分析酸进入表明,大约2.3米的高壁的完全氧化将考虑到坑湖中的硫酸盐和酸度质量平衡。此外,分析表明,通过流动的地下水,储存在浸没的高墙中的化学载量可能释放多年。合成漂洗曲线针对测量的水质校准,以模拟来自风化岩石的化学释放。

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