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首页> 外文期刊>Biological invasions >Do biological invasions by Eupatorium adenophorum increase forest fire severity?
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Do biological invasions by Eupatorium adenophorum increase forest fire severity?

机译:紫茎泽兰的生物入侵会增加森林火灾的严重性吗?

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摘要

The invasive species Eupatorium adenophorum is known to influence stand structure and wildfire the hazard in forests. In the current work, we quantitatively examined fire effects in invaded and uninvaded plots in southwestern Sichuan Province, China, with five different forest sites that had different types of dominant species: Pinus yunnanensis, P. yunnanensis-Quercus spp., Keteleeria fortunei, K. fortunei-Quercus spp., and Eucalyptus robusta. We compared the fuel chemistry (moisture, ash, heat value, and ignition point) and fire severity (flame length, fire intensity) under three burning conditions between the invaded and uninvaded plots in each forest sites, and then analyzed the results using multivariate response permutation procedures (MRPP). The burning conditions included: low (fine fuel moisture of 15 % and 5 km/h windspeed), moderate (fine fuel moisture of 10 % and 15 km/h windspeed), and extreme (fine fuel moisture of 5 % and 30 km/h windspeed). With all five sites, the fire severity and fuel loads were clearly significantly higher at the invaded sites. Fire severity was also intensified in the invaded coniferous sites compared to their mixed forest sites. These results indicate that biological invasions may increase the surface fire severity, perhaps through an increase in the heat value, and fuel loads, while reducing the moisture, ash, and ignition point of the understory herbaceous.
机译:众所周知,入侵种紫茎泽兰会影响林分结构并引起森林大火。在当前的工作中,我们定量研究了中国西南部四川省有五种不同林地具有不同优势种的林区的火情,这些林地具有不同类型的优势种:云南松,云南栎-栎属,Keteleeria fortunei,K 。fortunei-Quercus spp。和Eucalyptus Robusta。我们在每个森林站点的入侵和未入侵土地之间的三种燃烧条件下比较了燃料化学性质(水分,灰分,热值和着火点)和火灾严重性(火焰长度,着火强度),然后使用多元响应分析了结果置换程序(MRPP)。燃烧条件包括:低(细燃料水分为15%和5 km / h风速),中等(细燃料水分为10%和15 km / h风速)和极端(细燃料水分为5%和30 km / h / h风速)。在所有五个地点,入侵地点的火灾严重性和燃料负荷明显更高。与混交林地相比,被入侵的针叶林地的火灾严重性也有所增强。这些结果表明,生物入侵可能通过增加热值和燃料负荷来增加地表着火的严重性,同时降低地下草本植物的水分,灰分和着火点。

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