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首页> 外文期刊>Journal of Hazardous Materials >Nanosized zero-valent iron as Fenton-like reagent for ultrasonic-assisted leaching of zinc from blast furnace sludge
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Nanosized zero-valent iron as Fenton-like reagent for ultrasonic-assisted leaching of zinc from blast furnace sludge

机译:纳米零价铁作为类芬顿试剂,用于超声辅助从高炉污泥中浸出锌

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摘要

Ultrasonic-assisted sulphuric acid leaching combined with a Fenton-like process, utilizing nanoscale zero-valent iron (nZVI), was investigated to enhance the leaching of zinc from the blast furnace sludge (BFS). The leaching of iron (Fe) and zinc (Zn) from the sludge was investigated using Milli-Qwater/BFS ratio of 10 and varying the concentration of hydrogen peroxide, sulphuric acid, the temperature, the input energy for ultrasound irradiation, and the presence or absence of nZVI as a Fenton reagent. The results showed that with 1 g/1 addition of nZVI and 0.05 M of hydrogen peroxide, the kinetic rate of Zn leaching increased with a maximum dissolution degree of 80.2%, after 5 min treatment. In the absence of nZVI, the maximum dissolution degree of Zn was 99.2%, after 15 min treatment with 0.1 M of hydrogen peroxide. The rate of Zn leaching at several concentrations of hydrogen peroxide is accelerated in the presence of nZVI although a reduction in efficiency was observed. The loss of Fe was no more than 3%. On the basis of these results, the possible route for BFS recycling has been proposed (BFS slurry mixed with sulphuric acid and hydrogen peroxide is recirculated under ultrasonic irradiation then separated). (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了利用纳米零价铁(nZVI)的超声辅助硫酸浸提结合芬顿样工艺,以提高锌从高炉污泥(BFS)中的浸提。使用Milli-Qwater / BFS比为10并改变过氧化氢,硫酸,温度,超声辐射的输入能量和存在下的浓度,研究了从污泥中浸出铁(Fe)和锌(Zn)的方法。或不存在nZVI作为Fenton试剂。结果表明,在处理5分钟后,添加1 g / 1的nZVI和0.05 M的过氧化氢,锌的浸出动力学速率增加,最大溶出度为80.2%。在不存在nZVI的情况下,用0.1 M过氧化氢处理15分钟后,Zn的最大溶解度为99.2%。尽管观察到效率降低,但是在nZVI的存在下,在几种过氧化氢浓度下,锌的浸出速度加快了。铁的损失不超过3%。根据这些结果,提出了BFS再循环的可能途径(将BFS浆液与硫酸和过氧化氢混合后,在超声波辐射下进行再循环,然后分离)。 (C)2016 Elsevier B.V.保留所有权利。

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