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Formation of Hexavalent Chromium by Reaction between Slag and Magnesite-Chrome Refractory

机译:通过炉渣和菱镁铬耐火材料的反应形成六价铬

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The goal of this work was to under-stand how Cr~(6+) formation is affected by the interaction between chromite phases present in magnesite-chrome refractory and different slag compositions. In addition, the formation of Cr~(6+) as a function of chromite particle size and cooling rate due to the chromite phase/slag interaction was investigated. The following slag compositions were studied: calcium aluminate, calcium aluminum silicate, and calcium silicate. It was found that the presence of uncombined CaO in the calcium aluminate slags is responsible for a higher yield of Cr~(6+). However, the replacement of Al_2O_3 by SiO_2 in calcium aluminate slags decreases the formation of Cr~(6+). SiO_2 reacts with CaO to form stable 2CaO centre dot Al_2O_3 centre dot SiO_2 and CaO centre dot SiO_2 phases, consequently decreasing the amount of uncombined CaO available to react with the chromite phase to form Cr~(6+). Moreover, the content of Cr~(6+) is decreased by increasing chromite particle size and increasing the cooling rate of magnesite-chrome refractory.
机译:这项工作的目标是在菱镁矿难治和不同炉渣组合物中存在的铬铁矿相之间的相互作用影响Cr〜(6+)的影响。另外,研究了Cr〜(6+)作为铬铁矿粒度和由于铬铁矿相/渣相互作用引起的冷却速率的函数的形成。研究了以下炉渣组合物:铝酸钙,硅酸铝和硅酸钙。发现在铝酸钙渣中存在未粘的CaO是负责的Cr〜(6+)的产率更高。然而,在铝酸钙渣中通过SiO_2替换Al_2O_3降低了Cr〜(6+)的形成。 SiO_2与CaO反应形成稳定的2cao中心点Al_2O_3中心点SiO_2和CaO中心点SiO_2相,因此降低了可用于与铬铁矿相反应的未加入的CaO的量形成Cr〜(6+)。此外,通过增加铬铁矿粒度并增加菱镁铬耐火的冷却速率,降低Cr〜(6+)的含量。

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