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Study on Regeneration of Powdered Activated Carbon by Electron Beam

Study on Regeneration of Powdered Activated Carbon by Electron Beam
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摘要 The powdered activated carbon which had adsorbed phenylglycine solution from pharmaceutics factory can be regenerated by mean of irradiation of high-energy electron beams in oxygen, nitrogen and water vapor respectively. The effects of radiation dose and beam current on regeneration of activated carbon in different atmosphere were studied. Differential scanning calorimetry (DSC) and the iodine number of activated carbon were used to monitor the change of carbon adsorption. The results show that the powder activated carbon polluted with phenlglycine could be regenerated effectively by irradiation of high energy electron beams in nitrogen stream. The generation did not need high temperature, and the weight loss of carbon and energy consumption were minimum. The powdered activated carbon which had adsorbed phenylglycine solution from pharmaceutics factory can be regenerated by mean of irradiation of high-energy electron beams in oxygen, nitrogen and water vapor respectively. The effects of radiation dose and beam current on regeneration of activated carbon in different atmosphere were studied. Differential scanning calorimetry (DSC) and the iodine number of activated carbon were used to monitor the change of carbon adsorption. The results show that the powder activated carbon polluted with phenlglycine could be regenerated effectively by irradiation of high energy electron beams in nitrogen stream. The generation did not need high temperature, and the weight loss of carbon and energy consumption were minimum.
出处 《Advances in Manufacturing》 SCIE CAS 2000年第S1期165-168,共4页 先进制造进展(英文版)
基金 the Science Foundation of Shanghai Municipal of Commission of Education (99A44) and a Bilateral Scientific Project between C
关键词 powdered ACTIVATED CARBON REGENERATION IODINE NUMBER powdered activated carbon, regeneration, iodine number
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参考文献1

  • 1Blulely J. R,Overholser L. C.Oxidation of ATJ graphite by low concentration of water vapour and carbon dioxide in helium[].Carbon.1965

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