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首页> 外文期刊>Environmental Monitoring and Assessment >Environmental assessment of mining industry solid pollution in the mercurial district of Azzaba, northeast Algeria
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Environmental assessment of mining industry solid pollution in the mercurial district of Azzaba, northeast Algeria

机译:阿尔及利亚东北部阿扎巴汞矿区采矿业固体污染的环境评估

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To date, there have been few detailed studies regarding the impact of mining and metallogenic activities on solid fractions in the Azzaba mercurial district (northeast Algeria) despite its importance and global similarity with large Hg mines. To assess the degree, distribution, and sources of pollution, a physical inventory of apparent pollution was developed, and several samples of mining waste, process waste, sediment, and soil were collected on regional and local scales to determine the concentration of Hg and other metals according to their existing mineralogical association. Several physico-chemical parameters that are known to influence the pollution distribution are realized. The extremely high concentrations of all metals exceed all norms and predominantly characterize the metallurgic and mining areas; the metal concentrations significantly decrease at significant low distances from these sources. The geo-accumulation index, which is the most realistic assessment method, demonstrates that soils and sediments near waste dumps and abandoned Hg mines are extremely polluted by all analyzed metals. The pollution by these metals decreases significantly with distance, which indicates a limited dispersion. The results of a clustering analysis and an integrated pollution index suggest that waste dumps, which are composed of calcine and condensation wastes, are the main source of pollution. Correlations and principal component analysis reveal the important role of hosting carbonate rocks in limiting pollution and differentiating calcine wastes from condensation waste, which has an extremely high Hg concentration (1 %).
机译:迄今为止,尽管采矿和成矿活动对阿扎巴汞矿区(阿尔及利亚东北部)的固体部分产生了影响,但很少有详细的研究,尽管它的重要性和与大型汞矿的全球相似性。为了评估污染的程度,分布和来源,编制了明显污染的实物清单,并在区域和地方范围内收集了一些采矿废物,工艺废物,沉积物和土壤样本,以确定汞和其他污染物的浓度。金属根据其现有的矿物学协会。实现了已知会影响污染分布的几个物理化学参数。所有金属的极高浓度都超出了所有规范,并成为冶金和采矿地区的主要特征。在距这些源极低的距离处,金属浓度显着降低。地理积累指数是最现实的评估方法,它表明废物堆和废弃的汞矿附近的土壤和沉积物被所有分析的金属污染严重。这些金属的污染随着距离的增加而显着降低,这表明分散程度有限。聚类分析和综合污染指数的结果表明,由煅烧和冷凝废物组成的废物堆场是主要的污染源。相关性和主成分分析表明,碳酸盐岩宿主在限制污染和将煅烧废物与冷凝废物(汞含量极高(1%))区分开方面具有重要作用。

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