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超声破解吸持稠油粘土颗粒的研究

Study on ultrasonic disintegration of heavy oil polluted clay granule

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【作者】 宋轩张利红籍国东谭玉菲

【Author】 Song Xuan1 Zhang Lihong1,2 Ji Guodong2 Tan Yufei2(1.Institute of Water Conservancy and Environmental Engineering,Zhengzhou University,Zhengzhou 450001;2.Key Laboratory of Water and Sediment Sciences,Ministry of Education,Department of Environmental Engineering,Peking University,Beijing 100871)

【机构】 郑州大学水利与环境学院北京大学环境工程系,水沙科学教育部重点实验室北京大学环境工程系水沙科学教育部重点实验室

【摘要】 在频率为28 kHz的超声辐照下,研究了超声作用功率和辐照时间对石油污染土壤淋洗液中吸持稠油粘土颗粒的破解作用,并采用GC/MS分析了超声辐照时间对淋洗液中特征有机物的影响。结果表明,随着超声作用功率和辐照时间的增加,粘土颗粒吸持的稠油显著下降,辐照时间为45 min,作用功率为100 W时,粘土颗粒吸持稠油的解吸率为79.25%;作用功率为60 W,辐照时间为75 min时,粘土颗粒吸持稠油的解吸率为77.36%。超声波能够显著增加解吸稠油在水中的溶解率,辐照时间为45 min,作用功率为80 W时,水相含油率升高92%;当作用功率为60 W,辐照时间为75 min时,水相含油率升高近1倍。随着超声辐照时间的增加,极性相对较强的环烷酮类有机物的相对丰度随之增加,极性相对较弱的环烷二酮类有机物相对丰度则显著减小。超声波有利于异位化学淋洗在高含粘土颗粒石油污染土壤修复中的应用。

【Abstract】 The disintegration of clay granule contaminated by heavy oil in leaching wastewater was studied by the ultrasonic power and the ultrasonic time at frequency of 28 kHz.Impact of the ultrasonic time on characteristic organic compounds in aqueous phase was also analyzed by GC/MS.The results show that the absorption of heavy oil in clay granule decreased obviously with increasing the ultrasonic power and time.The desorption rate of heavy oil was 79.25% with the power of 100 W and the time of 45 min,while this figure was 77.36% with the power of 60 W and the time of 75 min.Furthermore,oil content in aqueous phase increased 92% with the ultrasonic power of 80 W and the time of 45 min,while that figure increased near up to 100% with the power of 60 W and the time of 75 min,indicating that soluble rate of the desorpted oil in water increased obviously by the use of ultrasonic.Besides,it was also found that the comparative abundance of naphthenone with the strong polarity increased with the increase of ultrasonic time,while that of naphthenic-dione with the week polanity followed the converse trend.Thus,ultrasonic is benefit to the appliance of chemical washing in the remediation of heavy oily polluted soil granule with high clay concentration.

【基金】 国家自然科学基金资助项目(40772146);教育部霍英东青年基金课题(104004);教育部新世纪人才奖励计划项目(NCET-06-007)
  • 【文献出处】 环境工程学报 ,Chinese Journal of Environmental Engineering , 编辑部邮箱 ,2009年02期
  • 【分类号】X53
  • 【被引频次】6
  • 【下载频次】197
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