生物地球化学过程方法在油田采出水中试湿地处理系统设计与施工中的应用

Q2 Earth and Planetary Sciences Environmental Geosciences Pub Date : 2011-09-01 DOI:10.1306/EG.03101111003
Minh Pham, J. W. Castle, J. Rodgers
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引用次数: 13

摘要

采用基于过程的方法,设计并建造了一个中试规模的人工湿地系统,用于处理撒哈拉以南非洲某油田的采出水。将油田采出水的特性与灌溉作物和灌溉牲畜的水质指南进行了比较,以确定需要处理的关注成分(COC)。在采出水中发现的COC包括油、油脂和金属(Zn、Ni、Fe、Mn)。然后,基于生物地球化学途径(即吸附、氧化和还原)设计并构建了一个中试规模的人工湿地处理系统,用于转移和转化鉴定的COC,使其达到符合水质准则的目标浓度。中试处理系统由三个系列的湿地池组成,每个系列有四个池。构建了两个系列的潜流湿地细胞,每个细胞有两层水土,分别是豌豆砾石和种植芦苇的中等大小砾石。此外,还构建了一系列自由水面湿地细胞,每个细胞含有沙质水土,并种植苔叶。该设计允许调整参数(即水力滞留时间和水土壤的有机含量),以促进通过确定的生物地球化学途径实现COC处理所需的条件。本研究提供了一个使用基于过程的方法设计和建设中试规模湿地处理系统的实例。
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Biogeochemical process approach to the design and construction of a pilot-scale wetland treatment system for an oil field-produced water
Using a process-based approach, a pilot-scale constructed wetland system was designed and built for treating water produced from an oil field in sub-Saharan Africa. The characteristics of the oil field-produced water were compared with water quality guidelines for irrigating crops and watering livestock to identify constituents of concern (COC) requiring treatment. The COC identified in the produced water include oil, grease, and metals (Zn, Ni, Fe, Mn). A pilot-scale constructed wetland treatment system was then designed and built based on biogeochemical pathways (i.e., sorption, oxidation, and reduction) for transferring and transforming the identified COC to achieve target concentrations meeting water quality guidelines. The pilot-scale treatment system consisted of three series of wetland cells, with four cells in each series. Two series of subsurface flow wetland cells were constructed with each cell having a two-layer hydrosoil of pea gravel and medium-size gravel planted with Phragmites australis. In addition, a series of free water surface wetland cells was constructed, with each cell containing sandy hydrosoil and planted with Typha latifolia. The design allows adjustment of parameters (i.e., hydraulic retention time and organic content of the hydrosoil) to promote the conditions needed to achieve treatment of COC through the identified biogeochemical pathways. This study provides an example of the design and construction of a pilot-scale wetland treatment system using a process-based approach.
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Environmental Geosciences
Environmental Geosciences Earth and Planetary Sciences-Earth and Planetary Sciences (all)
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