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Removal of Hexavalent Chromium in Carbonic Acid Solution by Oxidizing Slag Discharged from Steelmaking Process in Electric Arc Furnace

机译:电弧炉中炼钢加工中排出的氧化渣去除碳酸溶液中的六价铬

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Hexavalent chromium (Cr(VI)) is well-known to be a strong oxidizer, and is recognized as a carcinogen. Therefore, it is regulated for drinking water, soil, groundwater and sea by the environmental quality standards all over the world. In this study, it was attempted to remove Cr(VI) ion in a carbonic acid solution by the oxidizing slag that was discharged from the normal steelmaking process in an electric arc furnace. After the addition of the slag into the aqueous solution contained Cr(VI) ion, concentrations of Cr(VI) ion and total chromium (Cr(VI) + trivalent chromium (Cr(III)) ions decreased to lower detection limit of them. Therefore, the used slag could reduce Cr(VI) and fix Cr(III) ion on the slag. While Cr(VI) ion existed in the solution, iron did not dissolve from the slag. From the relation between predicted dissolution amount of iron(II) ion and amount of decrease in Cr(VI) ion, the Cr(VI) ion did not react with iron(II) ion dissolved from the slag. Therefore, Cr(VI) ion was removed by the reductive reaction between Cr(VI) ion and the iron(II) oxide (FeO) in the slag. This reaction progressed on the newly appeared surface of iron(II) oxide due to the dissolution of phase composed of calcium etc., which existed around iron(II) oxide grain in the slag.
机译:六价的铬(Cr(VI))是公知的是一种强氧化剂,并且被识别为致癌物。因此,规定由环境质量标准世界各地的饮用水,土壤,地下水和海洋。在这项研究中,有人试图除去铬(VI)离子在由从正常炼钢过程中电弧炉中排出的氧化炉渣碳酸溶液。在加入渣到水性溶液含有铬(VI)离子之后,将Cr的浓度(VI)离子和总铬(Cr(VI)+三价铬(Cr(III))的离子减少,以降低它们的检测限。因此,所使用的炉渣可以减少铬(VI)和炉渣固定铬(III)离子。虽然铬(VI)离子在溶液中存在,铁没有从炉渣溶解。从铁的预测溶解量之间的关系(II)离子和铬(VI)离子减少量,将Cr(VI)离子不与铁发生反应(II)离子从渣溶解。因此,将Cr用的Cr之间的还原反应除去(VI)离子(VI)离子和在炉渣中的铁(II)氧化物(FeO计)。该反应的进行铁(II)氧化物的新出现的表面上的由于相钙等构成的溶解,这存在围绕铁(II在炉渣)氧化物颗粒。

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