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Effects of coalbed natural gas development on fish assemblages in tributary streams of the Powder and Tongue rivers

机译:煤层气开发对粉河和舌头河支流鱼群的影响

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摘要

Summary1. Extraction of coalbed natural gas (CBNG) often results in disposal of large quantities of CBNG product water, which may affect aquatic ecosystems. We evaluated the effects of CBNG development on fish assemblages in tributary streams of the Powder and Tongue rivers. We used treatment and control, impact versus reference sites comparisons, surveys of CBNG product-water streams and in situ fish survival approaches to determine if CBNG development affected fish assemblages.2. Several of our results suggested that CBNG development did not affect fish assemblages. Species richness and index of biotic integrity (IBI) scores were similar in streams with and streams without CBNG development, and overall biotic integrity was not related to the number or density of CBNG wells. Fish occurred in one stream that was composed largely or entirely of CBNG product water. Sentinel fish survived in cages at treatment sites where no or few fish were captured, suggesting that factors such as lack of stream connectivity rather than water quality limited fish abundance at these sites. Fish species richness did not differ significantly from 1994 to 2006 in comparisons of CBNG-developed and undeveloped streams. Biotic integrity declined from 1994 to 2006; however, declines occurred at both impact and reference sites, possibly because of long-term drought.3. Some evidence suggested that CBNG development negatively affected fish assemblages, or may do so over time. Specific conductivity was on average higher in treatment streams and was negatively related to biotic integrity. Four IBI species richness metrics were negatively correlated with the number or density of CBNG wells in the catchment above sampling sites. Bicarbonate, one of the primary ions in product water, was significantly higher in developed streams and may have limited abundance of longnose dace (Rhinichthys cataractae). Total dissolved solids, alkalinity, magnesium and sulphate were significantly higher in developed streams.4. Biological monitoring conducted before the development of CBNG, and continuing through the life of development and reclamation, together with data on the quantity, quality and fate of CBNG product water will allow robust assessment of potential effects of future CBNG development worldwide.
机译:总结1。开采煤层气(CBNG)通常会导致大量CBNG产品水的处置,这可能会影响水生生态系统。我们评估了CBNG发展对粉河和舌头河支流鱼群的影响。我们使用了处理和控制,影响与参考地点的比较,CBNG产品-水流的调查以及原位鱼类生存方法,以确定CBNG的发育是否影响了鱼类的组合。2。我们的一些结果表明,CBNG的发展不会影响鱼类的聚集。在有和没有CBNG的河流中,物种丰富度和生物完整性指数(IBI)得分相似,总体生物完整性与CBNG井的数量或密度无关。鱼以一条流产生,该流主要或全部由CBNG产品水组成。前哨鱼在没有或几乎没有捕获鱼的处理地点的网箱中幸存,这表明诸如河流连通性不足而不是水质之类的因素限制了这些地点的鱼丰度。从1994年到2006年,通过CBNG开发流和未开发流的比较,鱼类物种丰富度没有显着差异。生物完整性从1994年到2006年下降;但是,由于长期干旱,影响地点和参考地点均出现了下降。3。一些证据表明,CBNG的发展会对鱼类的组合产生负面影响,或者随着时间的推移可能会造成负面影响。处理流中的平均电导率平均较高,并且与生物完整性呈负相关。四个IBI物种丰富度指标与采样点以上流域中CBNG井的数量或密度呈负相关。碳酸氢根是产品水中的主要离子之一,在发达的水流中明显较高,并且可能具有很长的长绒da(Rhinichthys cataractae)。发达水流中的总溶解固体,碱度,镁和硫酸盐含量明显更高。4。在CBNG开发之前进行的生物监测,以及在整个开发和回收期间将进行的生物监测,以及有关CBNG产品水的数量,质量和归宿的数据,将有助于对未来全球CBNG发展的潜在影响进行有力的评估。

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