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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Low-grade magnesium oxide by-products for environmental solutions: Characterization and geochemical performance
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Low-grade magnesium oxide by-products for environmental solutions: Characterization and geochemical performance

机译:用于环境解决方案的低级氧化镁副产物:表征和地球化学性能

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The reutilization of the by-products from the calcination of natural magnesite for environmental solutions is conditioned by the availability of MgO, CaO and other compounds. In order to overcome their great heterogeneity, an exhaustive chemical and physical characterization is necessary in order to assess their potential applications. In this study, the acid neutralization capacity (ANC) test was used to categorize three types of by-products (LG-MgO, LG-D and LG-F), which mainly differed according to source ore and processing conditions. The experimental data concerning the leaching of Mg2+, Ca2+, Fe2+ and SO42- was corroborated with geochemical predictions using the modelling software Visual MINTEQ, Likewise, the main solubility-controlling mineral phases were also identified. According to the results, there is a buffer capacity within the pH 8-10 range, mainly dominated by the neutralization of MgO/Mg(OH)(2), equilibrium with a small contribution from the carbonate content at lower pH values. The release of sulphates showed a non-pH dependency attributed to the solubility of CaSO4 and elemental sulphur present in petcoke. For dust materials, leaching of Fe was minimal above pH 6 owing to the insoluble nature of the Fe2O3/Fe3O4 pair. Accordingly, the by-products labeled as LG-D and LG-F are better suited for stabilizing solid wastes or wastewater that are add while LG-MgO is more appropriate for alkaline residues such as contaminated soils. In both cases, a suitable pH range in which pH-dependent heavy metals and metalloids show minimum solubility can be obtained. The use of these by-products guarantees an environmentally friendly alkali reservoir for the long-term stabilization of heavy metals and metalloids at a very competitive price as a substitute for the widely used lime. (C) 2015 Elsevier B.V. All rights reserved.
机译:MgO,CaO和其他化合物的可利用性限制了天然菱镁矿煅烧副产物对环境解决方案的再利用。为了克服它们的巨大异质性,必须进行详尽的化学和物理表征以评估其潜在应用。在这项研究中,酸中和能力(ANC)测试用于对三种副产品(LG-MgO,LG-D和LG-F)进行分类,这些副产品主要根据来源矿石和加工条件而有所不同。使用建模软件Visual MINTEQ,通过地球化学预测证实了有关Mg2 +,Ca2 +,Fe2 +和SO42-浸出的实验数据,同样,还确定了主要的溶解度控制矿物相。根据结果​​,在pH 8-10范围内具有缓冲能力,主要由MgO / Mg(OH)(2)的中和,平衡和较低pH值下碳酸盐含量的贡献较小而决定。硫酸盐的释放显示出非pH依赖性,这归因于CaSO4和石油焦中存在的元素硫的溶解度。对于粉尘材料,由于Fe2O3 / Fe3O4对的不溶性,因此在pH高于6时,Fe的浸出最少。因此,标记为LG-D和LG-F的副产品更适合稳定添加的固体废物或废水,而LG-MgO更适用于碱性残留物(如污染的土壤)。在这两种情况下,都能获得合适的pH范围,在该范围内,pH依赖的重金属和准金属显示出最低的溶解度。这些副产物的使用保证了环境友好的碱储层,可以长期竞争力地稳定重金属和准金属,并以极具竞争力的价格代替广泛使用的石灰。 (C)2015 Elsevier B.V.保留所有权利。

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