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Effect of Particle Size and Relative Density on Powdery Fe_3O_4 Microwave Heating

机译:粒径和相对密度对粉末状Fe_3O_4微波加热的影响

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In recent years, microwave energy is expected to be a heat source of high temperature process aiming for CO_2 reduction and energy conservation owing to the possibility of volumetric heating. In order to examine the applicability of microwave heating to ironmaking, it is important to investigate the microwave heating of raw materials of ironmaking such as Fe_3O_4. In this study, the effect of particle size and relative density on microwave absorptivity of powdery Fe_3O_4 was elucidated by the heating curves. Powdery Fe_3O_4 samples having different particle sizes and relative densities and bulk Fe_3O_4 samples were heated at the positions of the H (magnetic) and E (electric) field maxima in a 2.45 GHz single-mode microwave cavity. Sample temperatures abruptly increase and become constant after a while. At a constant temperature, the energy balance is attained, i.e., the rate of microwave energy absorption is equal to the rate of thermal energy dissipation. Assuming that the thermal energy dissipation rate due to convection and radiation heat fluxes is only a function of the sample temperature, the microwave absorptivity could be evaluated by the temperature at the steady state. It has been found that the microwave absorptivity of Fe_3O_4 powder decreases with an increase in relative density. On the other hand, the microwave absorptivity hardly depends on the particle size, which may be due to its quite a large penetration depth of Fe_3O_4 compared to metal.
机译:近年来,由于大量加热的可能性,微波能量有望成为旨在减少CO 2和节约能源的高温工艺的热源。为了检验微波加热在炼铁中的适用性,研究微波加热Fe_3O_4等炼铁原料非常重要。在这项研究中,通过加热曲线阐明了粒度和相对密度对粉末状Fe_3O_4的微波吸收率的影响。将具有不同粒径和相对密度的粉状Fe_3O_4样品和块状Fe_3O_4样品在2.45 GHz单模微波腔中的H(磁场)和E(电场)最大值的位置加热。样品温度突然升高并在一段时间后变得恒定。在恒定温度下,达到能量平衡,即微波能量吸收率等于热能耗散率。假设由于对流和辐射热通量导致的热能耗散率仅是样品温度的函数,则可以通过稳态温度来评估微波吸收率。已经发现,Fe_3O_4粉末的微波吸收率随着相对密度的增加而降低。另一方面,微波吸收率几乎不取决于粒径,这可能是由于与金属相比,Fe_3O_4的穿透深度相当大。

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