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Stabilization mechanism of arsenic in mine waste using basic oxygen furnace slag: The role of water contents on stabilization efficiency

机译:用碱性氧气炉渣稳定砷在矿山废料中的作用:含水量对稳定效率的作用

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摘要

Arsenic stabilization mechanism in a mine waste was investigated using a basic oxygen furnace (BOF) slag. A lab-scale batch test was carried out to stabilize As in the mine waste samples for 1 h, where various amounts of the BOF slag and distilled water were introduced. Different stabilization efficiencies were observed depending on the stabilizing conditions (i.e., BOF slag content and water to mine waste (L/S) ratio). The stabilization efficiencies ranged 75–92% and 92–95% for 5% (w-slag/w-mine waste) and 10% BOF slag treated mine waste samples, respectively. Interestingly, a notable effect of the L/S ratio on the stabilization efficiency was observed (78% at 0.05 L/kg, and 23% at 1.0 L/kg) at the 3% BOF slag treatment. The point of zero charge and the stabilizing pH indicated that the BOF slag surface was negatively charged. Based on the comparison of fresh and Ca-reduced BOF slags, As stabilization mechanism was determined to be adsorption through cation bridges by Ca2+. The Surface analysis using X-ray photoelectron spectroscopy (XPS) and the stabilization experiment conducted at lower pH provided evidence that the hindrance of As adsorption resulted from Ca(OH)2precipitation on the BOF slag surface when excess water (1.0 L/kg) was added. Such effect of water content seemed to be overcome by providing an excessive amount of the BOF slag. When an ample amount of Ca2+is provided and pH is maintained around 11, not only As adsorption but also calcium arsenate precipitation occur, and both contributed to the stabilization mechanisms of As.
机译:使用碱性氧气炉(BOF)炉渣研究了矿渣中砷的稳定机理。进行了实验室规模的分批测试,以将矿山废料样品中的As稳定1 h,并引入了各种量的BOF炉渣和蒸馏水。根据稳定条件(即转炉渣含量和水与矿山废料(L / S)之比)观察到不同的稳定效率。对于5%(w-矿渣/ w-矿山废物)和10%BOF矿渣处理过的矿山废物样品,稳定效率分别为75-92%和92-95%。有趣的是,在3%BOF炉渣处理中,观察到L / S比对稳定效率的显着影响(0.05 L / kg时为78%,1.0 L / kg时为23%)。零电荷点和稳定的pH值表明BOF炉渣表面带负电。通过比较新鲜的和还原的BOF炉渣,确定了As稳定机理是Ca2 +通过阳离子桥吸附。使用X射线光电子能谱(XPS)进行的表面分析和在较低pH值下进行的稳定化实验提供了证据,表明当过量的水(1.0 / L / kg)被添加时,Ca(OH)2沉淀在BOF炉渣表面上会导致As吸附障碍。添加。水分含量的这种影响似乎可以通过提供过量的BOF炉渣来克服。当提供充足的Ca2 +并将pH保持在11左右时,不仅会发生As吸附,而且还会发生砷酸钙沉淀,这两者都有助于As的稳定机理。

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