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功率超声在液态金属处理中作用的研究 被引量:6
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作者 马继宇 康进武 黄天佑 《铸造技术》 CAS 北大核心 2012年第3期314-317,共4页
介绍了在液态金属成形过程中进行功率超声处理的关键设备。综述了功率超声处理在提高铸件组织及性能方面的研究及应用现状,包括:晶粒细化、组织均匀化、减小和防止偏析、去除气体和夹杂物。结合相关研究提出了在液态金属成形过程中加入... 介绍了在液态金属成形过程中进行功率超声处理的关键设备。综述了功率超声处理在提高铸件组织及性能方面的研究及应用现状,包括:晶粒细化、组织均匀化、减小和防止偏析、去除气体和夹杂物。结合相关研究提出了在液态金属成形过程中加入合适的颗粒,研究超声对液态金属中夹杂物碎化及弥散行为,从而进一步提高铸件组织及性能的研究思路和方法。 展开更多
关键词 功率超声处理 液态金属成形 细化晶粒 除气 力学性能 夹杂物
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Impacts of Power Density on Heavy Metal Release During Ultrasonic Sludge Treatment Process
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作者 张光明 万甜 +1 位作者 高峰 董姗 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第4期469-473,共5页
The impact of ultrasonic power density on changes of heavy metals during sludge sonication was inves-tigated. Results showed that ultrasound could release heavy metals from sludge into the supernatant. There existed a... The impact of ultrasonic power density on changes of heavy metals during sludge sonication was inves-tigated. Results showed that ultrasound could release heavy metals from sludge into the supernatant. There existed an effective power density range of 0.8-1.6 W·ml?1 for the release of the total heavy metal; there was little release below 0.8 W·ml?1 and too high power density was adverse to the release. Furthermore, sonication showed selective release of heavy metal from sludge to the supernatant; copper, cadmium and lead were not released by sonication, while arsenic and nickel were released easily and their release ratio could reach 40%. The effective energy range for each heavy metal was also different that 0.8-1.2 W·ml?1 for arsenic, 0.5-1.6 W·ml?1 for nickel, and 0.8-1.6 W·ml?1 for mercury and chrome. The differences among heavy metal release during sonication might be explained by the different distribution of chemical fractions of each metal in sludge. Such selectivity could be used to control heavy metal release during sludge treatment. 展开更多
关键词 activated sludge sonication METALS power density chemical fractions
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