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Effect and corresponding mechanism of NaCl additive on boron carbide powder synthesis via carbothermal reduction

机译:NaCl添加剂对碳热还原碳化硼粉合成的影响及对应机理

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摘要

The demand of high-quality boron carbide (B4C) is enormous for various application, while its yield is quite low (40-50%) that needs to be improved. In this study, the effects of sodium chloride (NaCl) additive on the quality and yield of B4C synthesized by carbothermal reduction from an H3BO3-C powder mixture were investigated in detail. Under the optimal amount of 4 wt% NaCl additive, the purity, yield, and average particle size of B4C increase from 93.54% to 96.28%, 88.82% to 93.56%, and 24.2 to 43.3 mu m, as compared to the case without additive. Furthermore, the underlying effect mechanism of the NaCl additive was comprehensively analyzed. The NaCl additive promotes the depolymerisation of the complex network structure of B2O3 reactant and effectively decreases its viscosity by about 73%. This facilitates the mass transfer and improves the reaction kinetic, and thereby increases B4C yield. Additionally, the lower viscosity improves the kinetic condition of B4C crystal formation and promotes the growth of crystal, thus increasing the particle size. This study may imply a feasible route for the large-scale production of high-quality B4C.
机译:对于各种应用,高质量的碳化硼(B4C)的需求是巨大的,而其产量非常低(40-50%),需要改善。在该研究中,详细研究了氯化钠(NaCl)添加剂对通过H3BO3-C粉末混合物的碳热还原合成的B4C的质量和产率的影响。在4wt%NaCl添加剂的最佳量下,B4C的纯度,产率和平均粒度从93.54%增加到96.28%,88.82%至93.56%,与没有添加剂的情况相比,24.2至43.3μm。 。此外,全面分析了NaCl添加剂的潜在效应机制。 NaCl添加剂促进B2O3反应物的复合网络结构的解聚,并有效地将其粘度降低约73%。这有利于传质并改善反应动力学,从而增加B4C产量。另外,较低的粘度改善了B4C晶体形成的动力学条件并促进了晶体的生长,从而增加了粒度。本研究可能意味着高品质生产高质量B4C的可行路线。

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