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Shear-Force Based Stainless Steel Slag Modification for Chromium Immobilization

机译:基于剪切力的不锈钢渣改性铬

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Immobilization of chromium in a stable spinel by modification is a powerful way to prevent chromium pollution of stainless steel (SS) slags. The precipitated spinel grain size is usually smaller than 30 μ m, however, which limits the effectiveness of the modification. In the literature, very few efforts have been reported on promotion of spinel growth rate by optimizing the dynamic conditions. In this study, the effects of shear force on the spinel grain size evolution under isothermal conditions and during cooling were investigated. The experimental results indicate that the employment of shear force significantly changes the growth behavior of spinel at 1500°C. The growth mechanism of spinel was studied by using crystal size distribution (CSD) theory, showing different regimes of supply-controlled Ostwald ripening, surface-controlled growth with decaying nucleation rate, and constant rate nucleation and growth at shear rates of 0 s~(?1), 10.83 s~(?1), and 21.67 s~(?1), respectively. On the other hand, at a cooling rate of 5°C·min~(?1), the shear force was found to have little effect on the crystallization behavior of spinel. The results of static leaching tests indicated that hardly any chromium had leached, which makes the modified SS slag more environmentally friendly when used as a raw material.
机译:通过改性将铬固定在稳定的尖晶石中是防止不锈钢(SS)炉渣铬污染的有效方法。沉淀的尖晶石晶粒尺寸通常小于30μm,但是,这限制了改性的有效性。在文献中,很少有报道通过优化动态条件来促进尖晶石生长速率的努力。在这项研究中,研究了剪切力对等温条件下和冷却过程中尖晶石晶粒尺寸演变的影响。实验结果表明,采用剪切力显着改变了尖晶石在1500°C下的生长行为。利用晶体尺寸分布(CSD)理论研究了尖晶石的生长机理,表明了供应控制的奥斯特瓦尔德熟化,具有受控成核速率的表面受控生长,以及在0 s〜(剪切速率下恒定速率成核和生长)的不同机制。分别为10.3 s〜(?1)和21.67 s〜(?1)。另一方面,在冷却速度为5℃·min〜(Δ1)下,发现剪切力对尖晶石的结晶行为几乎没有影响。静态浸出试验的结果表明,几乎没有铬被浸出,这使得改性的SS渣用作原料时对环境更加友好。

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