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Oily sludge degradation study under arid conditions using a combination of landfarm and bioreactor technologies.

机译:结合使用农场和生物反应器技术,在干旱条件下进行油性污泥降解研究。

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摘要

Landfarming is one of the disposal methods used by oil companies to dispose of their generated oily sludge. Once in the soil, the sludge is subjected to biodegradation, leaching, and volatilization. Field studies were conducted in an arid region such as Saudi Arabia, the largest oil producer, where more than 30,000 m3 of oily sludge is generated annually.; Field-scale research was conducted in the Juaymah area in the Eastern Province of Saudi Arabia to study the degradation of petroleum hydrocarbons under natural and enhanced conditions using landfarm and bioreactor technologies. The studied parameters included: O&G (Oil and Grease), total hydrocarbon, BTEX (Benzene, Toluene, Ethyl benzene, and Xylene), pH, n-alkanes, microorganisms, metals, nutrients, and moisture content.; The results of this study revealed that weathering (evaporation) and not biodegradation was the dominant degradation mechanism. Of the three operating parameters (tilling, addition of water and/or addition of nutrients), tilling was the main parameter responsible for the highest percentage of reduction (76%) in the O&G concentrations. The addition of nutrients and water changed the soil properties and hence minimized the weathering effect. As demonstrated by the C17/Pr and C18/Ph ratios obtained from the GC-FID analysis, only those cells, which received nutrients showed evidence for biodegradation. In addition, a novel bacterial species known as Burkholderia glumae was identified, for the first time in Saudi Arabia, as one of the indigenous soil microorganisms responsible for the biodegradation.; The new analytical method of Open System Pyrolysis was used for the first time in this study and was compared with the routine O&G method to monitor oily sludge degradation. Although the results showed a similarity between these methods, however the Open System Pyrolysis provided a rapid method for the analysis of light volatile hydrocarbons in addition to several advantages over the O&G method.; The analytical results revealed that due to the method of air addition, the bioreactor system was not effective in achieving a high percentage of O&G reduction. The O&G reduction data indicates that natural attenuation should not be used as an on-going treatment/disposal method for oily sludges mainly because it is a very slow process. (Abstract shortened by UMI.)
机译:耕种是石油公司用来处置其产生的含油污泥的一种处置方法。进入土壤后,污泥将进行生物降解,浸出和挥发。在干旱地区,例如最大的石油生产国沙特阿拉伯,进行了现场研究,该地区每年产生超过30,000 m 3 的油性污泥。在沙特阿拉伯东部省的Juaymah地区进行了现场规模的研究,以研究自然环境和增强条件下使用陆地农场和生物反应器技术对石油碳氢化合物的降解。研究的参数包括:O&G(油和油脂),总烃,BTEX(苯,甲苯,乙苯和二甲苯),pH,正构烷烃,微生物,金属,养分和水分含量。这项研究的结果表明,风化(蒸发)而不是生物降解是主要的降解机理。在三个操作参数(倾斜,加水和/或添加养分)中,耕作是O&G浓度降低比例最高(76%)的主要参数。营养物质和水的添加改变了土壤的性质,从而最大程度地降低了风化作用。正如通过GC-FID分析获得的C 17 / Pr和C 18 / Ph比所证明的,只有那些接受营养的细胞才显示出生物降解的证据。此外,沙特阿拉伯首次发现了一种新的细菌种,称为 grumkeia glumae ,它是负责生物降解的本土土壤微生物之一。本研究首次使用了新的开放系统热解分析方法,并将其与常规的O&G方法进行了比较,以监测油污泥的降解。尽管结果显示了这些方法之间的相似之处,但是开放系统热解技术提供了一种轻度挥发性烃分析的快速方法,此外还具有优于O&G方法的诸多优势。分析结果表明,由于采用了添加空气的方法,生物反应器系统无法有效降低O&G的百分比。 O&G减少数据表明,自然衰减不应用作油性污泥的持续处理/处置方法,主要是因为这是一个非常缓慢的过程。 (摘要由UMI缩短。)

著录项

  • 作者

    Hejazi, Ramzi Fouad.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Engineering Civil.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;环境科学基础理论;
  • 关键词

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