Spatial patterns of primate electrocutions in Diani, Kenya
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Date
2018-06-26
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Geography and Geosciences
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Attribution-NonCommercial-NoDerivs 3.0 United States
Abstract
Electrocution from power lines threatens many primate species, yet knowledge of
effective evidence-based mitigation strategies is limited. Mitigation planning requires
an understanding of the spatial distribution of electrocutions to prioritize high-risk
areas. In Diani, a coastal Kenyan town, electrocution is an important cause of death for
five primate species. In this study we aim to describe the spatial patterns of
electrocutions and electric shock incidents (collectively referred to as 'electrocutions'
hereafter) and identify electrocution hotspots to guide an effective primate-
conservation approach in Diani. Colobus Conservation, a not for profit organization,
has recorded electrocutions and annual primate census data since 1998. We
georeferenced 329 electrocution data points and analyzed them using QGIS. We
identified and compared hotspots across species, seasons and time using kernel
density estimation and Getis-Ord-Gi*. We employed spatial regression models to test
whether primate population density and power line density predicted the location of
electrocution hotspots. Electrocutions occurred in hotspots that showed little variation
in location between species and seasons. The limited variation in hotspot location over
time likely occurred due to new building development in Diani and variability in primate
detection rates by community members. Primate density and power line density were
significant predictors of electrocution density for Angolan black and white colobus
(Colobus angolensis palliatus) and Sykes monkeys (Cercopithecus mitis albogularis),
but the relationship was weak suggesting the presence of additional risk factors. This
study provides a framework for systematic spatial prioritization of power lines that can
be used to reduce primate electrocutions in Diani, and can be adopted in other areas
of the world where primates are at risk from electrocution.