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微分旋流絮凝技术在小城镇水厂扩建改造中的应用 被引量:3
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作者 戈军 荆肇乾 +1 位作者 吕锡武 刘壮 《中国给水排水》 CAS CSCD 北大核心 2006年第22期29-31,共3页
根据强化絮凝过程的高密度微分场理论,将微分旋流絮凝技术应用于水厂沉淀池的改造实践。在不增加构筑物占地面积的情况下,生产能力由2×104m3/d增加为3.5×104m3/d,沉淀池出水浊度下降了64%,增加水量的单位投资为95.7元。该技... 根据强化絮凝过程的高密度微分场理论,将微分旋流絮凝技术应用于水厂沉淀池的改造实践。在不增加构筑物占地面积的情况下,生产能力由2×104m3/d增加为3.5×104m3/d,沉淀池出水浊度下降了64%,增加水量的单位投资为95.7元。该技术投资省、效果好,适于在小城镇水厂扩建改造中推广应用。 展开更多
关键词 微分旋流 絮凝 水厂扩建改造 沉淀池
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Effect of a cyclonic flotation column on the separation of magnesium from phosphate ore 被引量:8
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作者 Li Guosheng Liu Jiongtian Cao Yijun Wang Dapeng 《Mining Science and Technology》 EI CAS 2011年第5期647-650,共4页
This study was performed to investigate the effects of the cyclonic separation mechanism on the removal of magnesium from phosphate ore. An analysis of the particle-bubble collision mechanism in a cyclonic force field... This study was performed to investigate the effects of the cyclonic separation mechanism on the removal of magnesium from phosphate ore. An analysis of the particle-bubble collision mechanism in a cyclonic force field was used to design two different pulp circulation systems for a cyclonic-static micro-bubble flotation column (FCSMC). Experiments comparing the two conditions were then conducted. Size analysis of the feed and separated products was conducted with a BXF cyclone size analyzer. The results show that about 34.60% of the total MgO content in the feed exists in the -10 μm fraction. This demonstrates that magnesium removal from phosphate ore has the characteristics of a micro-fine particle flotation problem. Under conditions of cyclonic circulation the MgO level of the concentrate is 1.74g, which is lower than that obtained from the column operated in direct-flow circulation by 0.34%, These results indicate that the cyclonic circulation mechanism of the FCSMC can promote removal of micro-fine particles containing magnesium. This is attributed to the function of surface flotation and to the reduction of the lower separation limit under conditions of cyclonic circulation. 展开更多
关键词 Flotation columnCyclonic separationPhosphate oreRemoval of magnesium
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