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Porous SiC-mullite ceramics with high flexural strength and gas permeability prepared from photovoltaic silicon waste

机译:具有高弯曲强度和从光伏硅废料制备的弯曲强度和燃气渗透性的多孔SIC-MULLITE陶瓷

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In this paper, porous SiC-mullite ceramics (PSMCs) with high flexural strength and gas permeability were prepared with various mass fractions of MoO3 and Al2O3. Higher performance was achieved at low sintering temperatures and the problem of large amounts of cristobalite phase in the PSMCs was solved. The results show that 4 wt% MoO3 is optimal for the growth of mullite rods at a sintering temperature of 850 degrees C. Porosity was effectively controlled by the formation of interlocking structure and mechanical strength was not obviously affected. Therefore, the optimal content of Al2O3 was 25 wt% in samples prepared at 850-1200 degrees C, as the flexural strength was generally higher than that in samples with other Al2O3 contents. The highest flexural strength of 66.02 MPa was achieved at an open porosity of 45.4%, gas permeability of 2.32 x 10(-13) m(2), and permeance of 4.62 x 10(-5) mol m(-2) s(-1) Pa-1 in samples sintered at 1000 degrees C. This work is of significance for the industrial preparation of PSMCs from photovoltaic silicon waste.
机译:本文用MOO3和Al2O3的各种质量级分制备具有高弯曲强度和透气性的多孔SiC-Murlite陶瓷(PSMC)。在低烧结温度下实现了更高的性能,并解决了PSMC中大量的助氢硼铝相的问题。结果表明,4wt%MOO3是在850℃的烧结温度下的莫来石杆的生长最佳。通过形成互锁结构的形成有效控制孔隙率,并且机械强度没有明显受到影响。因此,在850-1200℃制备的样品中,Al 2 O 3的最佳含量为25wt%,因为弯曲强度通常高于样品中的抗弯曲强度与其它Al 2 O 3含量的样品。 66.02MPa的最高弯曲强度以45.4%,耐气液渗透率为2.32×10(-13)m(2),且渗透率为4.62×10(-5)mol m(-2))( -1)样品中的PA-1在1000℃下烧结。这项工作对于从光伏硅垃圾的PSMC的工业制备具有重要意义。

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