Pan Wei, Yi Ruge, Liao Zhigang, Yang Lingrong
School of Resources and Safety Engineering, Central South University, Changsha 410083, China.
Key Laboratory of Ministry of Education of China for Efficient Mining and Safety of Metal Mines, University of Science and Technology Beijing, Beijing 100083, China.
Materials (Basel). 2022 Apr 2;15(7):2620. doi: 10.3390/ma15072620.
Ultrasonic technology is being increasingly explored in minerals processing. In this paper, ultrasonic treatment was introduced as a novel method for microbial desulfurization of sulfide ores. A Box-Behnken experiment was performed to find the best combination of factor levels for the following experiments; consequently, the combination of factor levels at the maximum 5-day average desulfurization rate at 20 g of ore was a particle size of 120-140 mesh, a shaker speed of 175 rpm, and a dosage of 111 mL of bacterial solution. Under these conditions, a microbial desulfurization experiment of sulfide ores by ultrasonic treatment was carried out, and the effect of the particle size, the ultrasonic action time, and the ultrasonic power were investigated. Results indicated that the ultrasonic effect was not significant for ore samples with larger particle sizes, and the appropriate increase in ultrasonic action time was beneficial to the improvement of desulfurization rate, but the effect showed a decreasing trend when it exceeded 50 min, and the best desulfurization effect was achieved when the power was 300 W. This study demonstrated that the effect of microbial desulfurization can be greatly enhanced by ultrasonic treatment.
超声波技术在矿物加工中得到了越来越多的探索。本文介绍了超声波处理作为一种硫化矿微生物脱硫的新方法。进行了Box-Behnken实验以找出后续实验的最佳因素水平组合;因此,在20克矿石时5天平均脱硫率最高的因素水平组合为粒度120-140目、摇床转速175转/分钟和细菌溶液用量111毫升。在此条件下,进行了超声波处理硫化矿的微生物脱硫实验,并研究了粒度、超声作用时间和超声功率的影响。结果表明,对于粒度较大的矿石样品,超声效果不显著,适当增加超声作用时间有利于提高脱硫率,但超过50分钟后效果呈下降趋势,功率为300瓦时脱硫效果最佳。本研究表明,超声波处理可大大提高微生物脱硫效果。