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首页> 外文期刊>Lutra >Potential effects of PC-amber on the activity of common pipistrelles {Pipistrellus pipistrellus)
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Potential effects of PC-amber on the activity of common pipistrelles {Pipistrellus pipistrellus)

机译:PC-琥珀对普通蜥蜴(Pipistrellus pipistrellus)活性的潜在影响

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Artificial light at night (ALAN) is known to have an impact on the environment. Adapted to the dark, nocturnal animals are likely to be strongly influenced by ALAN. For bats this means potential effects on the functionality of roosts, flight paths andforaging areas. When conducting construction work, a certain amount of light is required to ensure a safe working environment for humans. To limit the potential negative effects of ALAN on the environment colour spectrum light solutions have been implemented in the past. There is a trade-off between environmental impact, safety and costs. In this study, in close proximity to a specific construction site, we were interested in the effect of phosphor converted (PC) amber on the activity of common pipistrelles (Pipistrellus pipistrellus). PC-amber is cheaper and more energy-efficient than amber light and gives people more visibility. We conducted an experiment with four different light regimes: PC-amber, amber, white and natural darkness as a control, and measured the activity of common pipistrelles. We included several environmental variables in the analyses and used a negative binomial mixed-effect regression model with a log-link function. Neither colour treatment nor distance to the light source significantly explain the observed variation in common pipistrelle activity. The variance in data is partly explained by environmental factors as bat activity significantly decreased with precipitation, increasing wind speed and increasing moon illumination. Based on this experiment, no firm conclusion can be drawn on the effect of PC-amber coloured light on the activity of common pipistrelles. To be able to make a statement with more certainty, more replicates on multiple locations are needed.
机译:众所周知,夜间人造光 (ALAN) 会对环境产生影响。适应黑暗的夜行动物可能会受到ALAN的强烈影响。对于蝙蝠来说,这意味着对栖息地、飞行路径和觅食区功能的潜在影响。在进行建筑工作时,需要一定的光线,以确保人类安全的工作环境。为了限制ALAN对环境的潜在负面影响,过去已经实施了色谱光解决方案。在环境影响、安全和成本之间需要权衡取舍。在这项研究中,在靠近特定建筑工地的情况下,我们对荧光粉转化 (PC) 琥珀对普通 pipistrelles (Pipistrellus pipistrellus) 活性的影响感兴趣。PC-琥珀色比琥珀色灯更便宜、更节能,让人们更容易看到。我们以四种不同的光照方式进行了实验:PC-琥珀色、琥珀色、白色和自然黑暗作为对照,并测量了常见 pipistreles 的活性。我们在分析中纳入了几个环境变量,并使用了带有对数链接函数的负二项式混合效应回归模型。无论是颜色处理还是与光源的距离都不能显着解释观察到的常见pipistrelle活性的变化。数据差异部分是由环境因素解释的,因为蝙蝠活动随着降水、风速增加和月球照明增加而显着减少。基于该实验,无法得出PC琥珀色光对常见pipistrelles活性影响的确切结论。为了能够更确定地做出声明,需要在多个位置进行更多重复。

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