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Application of high-temperature rapid catalytic technology to forecast the volumetric stability behavior of containing steel slag mixtures

机译:高温快速催化技术在预测含钢渣混合物体积稳定性行为中的应用

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摘要

Steel slag from the steel and iron industries often exhibits volumetric instability (expansion) due to long-term usage. Therefore, this study applied a high-temperature rapid catalytic technology to accelerate the hydration reaction to forecast the volumetric instability of steel slag in the shortest time. The steel slag included basic oxygen furnace (BOF) slag and desulfurization slag (DSS), which replaced 50% of natural river sand by weight for 1 to 4 days of high-temperature catalysis (100 ℃) and autoclave expansion. In order to forecast more accurate results, a numerical regression was applied to crosscheck the test result and simulate a theoretical expansion value. The results showed that the specimens of each group ruptured after a minimum of three days of high-temperature catalysis when the substitution amount was 30%. The expansion rupture warning value was within approximately 0.13-0.14%. The correlation coefficient R~2, obtained using a simulated expansion value, was greater than 0.9. The degradation rate of DSS with a high free lime (f-CaO) content was greater than that for BOF.
机译:由于长期使用,钢铁行业的钢渣常常表现出体积不稳定性(膨胀)。因此,本研究应用高温快速催化技术加速水化反应,以最短的时间预测钢渣的体积不稳定性。钢渣包括碱性氧气炉(BOF)渣和脱硫渣(DSS),它们以重量计代替了50%的天然河砂,进行了1-4天的高温催化(100℃)和高压釜膨胀。为了预测更准确的结果,使用了数值回归来交叉检验测试结果并模拟理论扩展值。结果表明,当取代量为30%时,在至少三天的高温催化下,各组的样品破裂。膨胀破裂警告值在约0.13-0.14%内。使用模拟扩展值获得的相关系数R〜2大于0.9。游离石灰(f-CaO)含量高的DSS的降解速率大于BOF。

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