4.7 Article

Evaluating the impact of gas extraction infrastructure on the occupancy of sagebrush-obligate songbirds

期刊

ECOLOGICAL APPLICATIONS
卷 25, 期 5, 页码 1175-1186

出版社

WILEY
DOI: 10.1890/14-1498.1

关键词

Amphispiza belli; Brewer's Sparrow; gas infrastructure; multi-scale occupancy; natural gas; Oreoscoptes montanus; roads; sagebrush; Sagebrush Sparrow; Sage Thrasher; songbirds; Spizella breweri

资金

  1. U.S. Bureau of Land management (BLM)
  2. John Fell Fund of the University of Oxford

向作者/读者索取更多资源

Development associated with natural gas extraction may have negative effects on wildlife. Here we assessed the effects of natural gas development on the distributions of three sagebrush-obligate birds (Brewer's Sparrow, Spizella breweri; Sagebrush Sparrow, Amphispiza belli; and Sage Thrasher, Oreoscoptes montanus) at a natural gas extraction site in Wyoming, USA. Two drivers of habitat disturbance were investigated: natural gas well pads and roadways. Disturbances were quantified on a small scale (minimum distance to a disturbance) and a large scale (landscape density of a disturbance). Their effects on the study species' distributions were assessed using a multi-scale occupancy model. Minimum distances to wells and roadways were found to not have significant impacts on small-scale occupancy. However, roadway and well density at the landscape-scale significantly impacted the large-scale occupancy of Sagebrush Sparrows and Sage Thrashers. The results confirmed our hypotheses that increasing road density negatively affects the landscape-scale occupancy rates of Sagebrush Sparrow and Sage Thrasher, but did not confirm our hypothesis that increasing well density would negatively impact large-scale occupancy. We therefore suggest that linear features that affect patch size may be more important than point features in determining sagebrush-obligate songbird occupancy when compared to structural effects such as habitat fragmentation and increased predation. We recommend that future well construction be focused along existing roadways, that horizontal drilling be used to reduce the need for additional roads, and that deactivation and restoration of roadways be implemented upon the deactivation of wells, we also recommend a possible mitigation strategy when new roads are to be built.

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