The relationship between produced water discharges, and plant biomass and species composition, in three Louisiana marshes

Irving A. Mendelssohn, Kathryn M. Flynn, Brian J. Wilsey
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引用次数: 4

Abstract

Afield analysis of the effect of oil and gas derived produced water discharges on the vegetation of one freshwater and two brackish wetlands in coastal Louisiana was conducted. Aboveground biomass, plant species composition, pH and salinity were measured to determine if the produced water discharge in each marsh was related to differences in plant response. Of the three marshes investigated, only one of the brackish marshes exhibited significantly lower live aboveground biomass at the site receiving produced waters compared to its adjacent reference site. Although interstitial salinities were significantly higher at the treatment site of this brackish marsh, the salinity difference between treatment and reference sites was only 1·5 ppt in a marsh with a mean salinity of 11·9 ppt. This salinity difference should have no discernible biological effect on the brackish species inhabiting this marsh. Also, the differences in species composition between treatment and reference sites of each marsh did not indicate a produced water effect. Thus, at these three produced water discharge sites the dilution of the produced water in the discharge canals, plus the sinking of higher density produced water to canal bottoms (thus making it less available for tidal movement into the marsh), appears to prevent a biologically significant negative impact on the marsh vegetation. Whether this conclusion is valid for other produced water sites needs further evaluation.

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路易斯安那州三个湿地产出水排放与植物生物量和物种组成的关系
对美国路易斯安那州沿海地区1个淡水湿地和2个咸淡湿地的油气采出水排放对植被的影响进行了野外分析。测量了地上生物量、植物种类组成、pH和盐度,以确定每个沼泽的采出水排放量是否与植物响应的差异有关。在调查的三个湿地中,只有一个咸淡沼泽在接收采出水的地点表现出明显低于邻近参考地点的地上活生物量。虽然该微咸沼泽处理点的间质盐度显著高于对照点,但在平均盐度为11.9 ppt的沼泽中,处理点与对照点之间的盐度差异仅为1.5 ppt。这种盐度差异对居住在这片沼泽的咸淡水物种应该没有明显的生物影响。此外,每个沼泽处理点和参考点之间物种组成的差异并不表明采出水的影响。因此,在这三个采出水排放点,排放渠道中采出水的稀释,加上更高密度的采出水下沉到渠道底部(从而使其较少用于潮汐运动进入沼泽),似乎可以防止对沼泽植被产生重大的生物学负面影响。这一结论是否适用于其他采出水场还有待进一步评价。
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