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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Environmental characterization of Sarcheshmeh Cu-smelting slag, Kerman, Iran: Application of geochemistry, mineralogy and single extraction methods
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Environmental characterization of Sarcheshmeh Cu-smelting slag, Kerman, Iran: Application of geochemistry, mineralogy and single extraction methods

机译:伊朗克尔曼Sarcheshmeh铜熔渣的环境特征:地球化学,矿物学和单一提取方法的应用

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Annually, more than 370,000 tons of slag waste is produced in Sarcheshmeh Copper Complex, the biggest Cu-producer in Iran. Geochemical, mineralogical and single extraction methods were used in order to evaluate the contamination potential of metal(loid)s associated with Sarcheshmeh smelting slags. Results showed that, like the other non-ferrous or basemetal slags, Sarcheshmeh slags are considered as one of themetalliferous smelting wastes with the multi-elemental contamination potential of most of the potentially toxic elements. Mineralogical studies revealed that the mineral assemblage of the investigated samples is controlled by at least three main factors, including: (1) primary mineralogy of the ore concentrate (chalcocite, chalcopyrite, covellite +/- pyrite); (2) smelting process (magnetite, fayalite, pyroxene); and (3) weathering reactions in arid to semiarid climate conditions [thenardite (Na2SO4), bonattite (CuSO4 center dot 3H(2)O) and gypsum (CaSO4 center dot 2H(2)O)]. Results obtained from the U.S. EPA toxicity characteristic leaching procedure (TCLP) and water soluble tests revealed that the order of leachability of target elements from the most to the least in the slag samples is as S Cu > > Zn > Fe > Mo > Pb > Ni > Mn > Co > As > Se > Sb > Cd > Cr = Sn = Ag = Bi. The maximum contamination potential, higher than the considered toxicity regulatory levels (one-hundred times the U.S. EPA maximum contamination level in drinking water), of As (9.35 mg/L), Mo (186.7 mg/L), Sb (3.50 mg/L) and Se (6.12 mg/L) was observed in the alkaline leached solutions (pH 9.67) of the sediments associated with the slag dump drainages, while the maximum concentrations of the other investigated elements such as Cu, Co, Cd, Fe, and Zn were measured in the acidic (pH < 5) leached solutions. Annually, about 18.7% of Sarcheshmeh reverberatory slags are used for other purposes such as sandblasting. Wind blowing slag particles, produced from the grinding and sieving facilities, are responsible for the enrichment of elements such as As, Cu, Mo, Pb, Sb, Sn, Zn, Cr, S and Fe in the topsoils around the slag preparation site. Based on the acid acetic (0.43 mol/L) and EDTA (0.05 mol/L) leaching tests, the solubility and thus the bioavailability of these potentially toxic elements also were increased in the surface contaminated soils, a subject that is very important from environmental point of view. Obtained results also emphasize on the need for the greater caution in the slag waste management. (C) 2016 Elsevier B.V. All rights reserved.
机译:伊朗最大的铜生产商Sarcheshmeh铜矿区每年生产超过370,000吨炉渣废料。为了评估与Sarcheshmeh熔渣相关的金属(金属)的污染潜力,使用了地球化学,矿物学和单一提取方法。结果表明,与其他有色金属或贱金属矿渣一样,Sarcheshmeh矿渣被认为是一种金属冶炼废料,其中大多数潜在有毒元素具有多元素污染潜能。矿物学研究表明,所研究样品的矿物组成受至少三个主要因素控制,这些因素包括:(1)矿石精矿的主要矿物学(黄铜矿,黄铜矿,钙锰矿/黄铁矿); (2)冶炼工艺(磁铁矿,方铁石,辉石); (3)在干旱至半干旱气候条件下的风化反应[thenardite(Na2SO4),bonattite(CuSO4中心点3H(2)O)和石膏(CaSO4中心点2H(2)O)]。从美国EPA毒性特征浸出程序(TCLP)和水溶性测试获得的结果表明,渣样品中目标元素的浸出性从最高到最低的顺序为S Cu Zn> Fe> Mo> Pb> Ni> Mn> Co> As> Se> Sb> Cd> Cr = Sn = Ag = Bi砷(9.35 mg / L),钼(186.7 mg / L),锑(3.50 mg / L)的最高潜在污染度高于考虑的毒性法规水平(美国EPA饮用水中最高污染水平的一百倍) L)和Se(6.12 mg / L)在与矿渣倾倒排水相关的沉积物的碱性浸出溶液(pH 9.67)中观察到,而其他调查元素如Cu,Co,Cd,Fe,在酸性(pH <5)浸出溶液中测量锌和锌。每年大约有18.7%的Sarcheshmeh反射渣被用于其他目的,例如喷砂。由研磨和筛分设备产生的风渣颗粒负责在渣制备场所周围的表层土壤中富集诸如As,Cu,Mo,Pb,Sb,Sn,Zn,Cr,S和Fe等元素。根据酸性乙酸(0.43 mol / L)和EDTA(0.05 mol / L)的浸出试验,这些潜在有毒元素在表面污染的土壤中的溶解度和生物利用度也得到了提高,这对于环境而言非常重要观点看法。获得的结果还强调了在炉渣废物管理中需要更加谨慎。 (C)2016 Elsevier B.V.保留所有权利。

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