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Microwave Induced Solid-Solid Reactions between Fe_3O_4 and Carbon Black Powders

机译:微波诱导的Fe_3O_4与炭黑粉末的固-固反应

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The reduction of 1 μm diameter magnetite by 22 μm diameter carbon black in powder mixture under a constant microwave power of 2.8 kW at 2.45 GHz up to 1 200℃ was investigated. The initial mixture mass was 6 g in every experiment. Temperature and mass loss of the reacting mixture as a function of time were continuously recorded. The temperature measurement was from 220℃ and the mass loss from the start of irradiation. Five different mixtures were irradiated; all of them up to 800℃, three up to 1 000℃ and two up to 1 200℃. All mixtures registered measurable mass losses below 220℃. Total reduction of magnetite to wustite was accomplished below an average temperature of 651 ℃. Reduction rates as a function of the irradiation time were calculated. The reduction presented three distinctive stages; a initial very fast stage with an average maximum reduction rate of 0.017 g/s, a second stage of constant very low reduction rate 0.0017 g/s, and a third one with a maximum average reduction rate of 0.0045 g/s. During the first stage all the magnetite was reduced to wustite and some wustite to iron. The reduction of magnetite to wustite is shown to take place through a series of consecutive reactions involving solid-solid reactions of magnetite with carbon black as well as solid-gas reactions. Under microwave irradiation true direct reduction occurs at much lower temperatures than under conventional heating. The results can not be explained to occur by thermal effects but by the so called microwave effects.
机译:研究了在2.8 kW的恒定微波功率,2.45 GHz下,最高1200℃下,粉末混合物中22μm直径的炭黑对1μm直径磁铁矿的还原作用。在每个实验中,初始混合物质量为6 g。连续记录反应混合物的温度和质量损失随时间的变化。温度测量从220℃开始,质量损失从辐照开始。照射了五种不同的混合物。它们全都在800℃以下,三个在1 000℃以下,另外两个在1200℃以下。所有混合物在220℃以下均记录有可测量的质量损失。在平均温度651℃以下,磁铁矿完全还原为铁矾石。计算出还原率随照射时间的变化。减少呈现三个不同的阶段:最初的非常快的阶段,平均最大降低速率为0.017 g / s,第二阶段的恒定的非常低速率降低为0.0017 g / s,第三阶段的最大平均降低速率为0.0045 g / s。在第一阶段中,所有磁铁矿都还原为钙铁矿,部分磁铁矿还原为铁。磁铁矿还原为铁矾石是通过一系列连续的反应进行的,这些反应涉及磁铁矿与炭黑的固-固反应以及固-气反应。在微波辐射下,真正的直接还原发生在比常规加热下低得多的温度下。结果不能解释为是由热效应引起的,而是由所谓的微波效应引起的。

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