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Dissolution Behavior of Fe from Glassy Oxides Phase in Steelmaking Slag

机译:钢铁渣中玻璃氧化物相中铁的溶解行为

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Steelmaking slag was confirmed to be a useful fertilizer for paddy growth as it efficiently supplies Ca and Si to soil water. In addition, supplement of Fe from slag fertilizer has been expected to suppress the H_2S generation in paddy soil, especially for the degraded paddy soil. However, on the basis of our previous research, the Fe dissolution ability changed with slag brands, and even some brands could dissolve Fe under paddy soil pH, the supplying ability were not high. To improve Fe dissolution, we found that among various kinds of Fe-rich miner-alogical phases in slag, the CaO-SiO_2-FeO glassy phase showed highest water solubility of Fe. Because the CaO-SiO_2-FeO glassy phase was a quenched molten phase, its dissolution behavior may depend on chemical composition, and this is important for controlling slag composition to produce fertilizer which can easily release Fe. Therefore, in this research, the CaO-SiO_2-FeO glassy phase of various CaO/SiO_2 ratio, Fe~(2+)/T-Fe ratios, and FeO contents were synthesized, and the dissolution behaviors of Fe as well as other cations from these synthetic glassy phases into an aqueous solution at pH of 5 were investigated. The result showed that the dissolution ratio of Fe increased significantly by increasing Fe~(2+)/T-Fe ratio. An increase in FeO content of glassy phase also increased the dissolution of Fe. In addition, the Fe dissolution ratio showed a local maximum with increasing CaO/SiO_2 ratio.
机译:炼钢炉渣被证实是水稻生长的有用肥料,因为它可以有效地向土壤水中供应钙和硅。此外,从矿渣肥料中补充铁有望抑制稻田土壤中H_2S的产生,特别是对于退化的稻田土壤。然而,根据我们以前的研究,铁的溶解能力随矿渣品牌的变化而变化,甚至有些品牌在稻田土壤pH值下都能溶解铁,供应能力不高。为了提高铁的溶解度,我们发现在矿渣中的各种富铁矿相中,CaO-SiO_2-FeO玻璃态相显示出最高的Fe水溶性。由于CaO-SiO_2-FeO玻璃态相为淬火熔融相,因此其溶解行为可能取决于化学成分,这对于控制炉渣成分以生产易于释放Fe的肥料非常重要。因此,本研究合成了各种CaO / SiO_2比,Fe〜(2 +)/ T-Fe比和FeO含量的CaO-SiO_2-FeO玻璃相,以及Fe和其他阳离子的溶解行为研究了从这些合成玻璃相到pH为5的水溶液。结果表明,随着Fe〜(2 +)/ T-Fe比的增加,Fe的溶出比明显增加。玻璃相中FeO含量的增加也增加了Fe的溶解度。另外,随着CaO / SiO_2比的增加,Fe的溶出率出现局部最大值。

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