文献翻译-摩擦电选对颗粒富集和电荷转移的应用效果.doc
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1、英文翻译原文The effects of particle concentration and charge exchange on fly ash beneficiation with pneumatic triboelectrostatic separationFederico Cangialosi a, Michele Notarnicola a, Lorenzo Liberti a, John M. Stencel bAbstract:Pneumatic transport, triboelectrostatic separation is a well-known technique
2、 for separating unburned carbon from coal combustion fly ashes to create ash products useful as pozzolanic additives in cement. Although considerable fundamental insight has been gained about particle interactions and charging during carbon-ash beneficiation, little work has been done to examine how
3、 particle concentration in the ash transport charging line, and how tribocharged particles colliding with electrodes and causing particle charge reversal, relate to carbon-ash separation performance. We show ash-carbon separation performance diminishes with increasing particle concentrations, especi
4、ally for carbon-rich fly ashes, and exhibits a maximum related to the electric field strength. On the basis of this investigation, an improved separator geometry was established that helps to overcome the limits imposed by charge reversal.1.IntroductionThe production of coal combustion fly ash from
5、Italian and US thermoelectric power plants has risen to 0.9 Mtons/y and 110 Mtons/y, respectively. Because fly ash is pozzolanic and classified as a “non-hazardous” waste by European and US regulations 1, potentially large markets exist for its use as an inexpensivereplacement for cement in concrete
6、. However, the application of low-NOx burners in coal-fired utilities has diminished fly ash qualities, increasing the loss-on-ignition (LOI) content and preventing its use as an admixture in cement. As average LOI contents in fly ash from power plants equipped with low-NOx burners can be near 15%,
7、a three-fold reduction in LOI would be required to meet requirements for ash re-use in concrete, as defined by EN-450 European (LOI 5%) 2. Dry separation of unburned carbon from ashes using triboelectrostatic processing is known to reduce the carbon content with acceptable ash product recoveries 36.
8、 Using pneumatic transport technology to produce saleable ash products complements operations and addresses issues already considered important in power plants: first, pneumatic ash transport is already used in most ash handling plants 7; second, although pneumatic transport of ash causes wear on pi
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