Department of Civil and Environmental Engineering, University of California, Los Angeles, Los Angeles, CA, USA.
Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, USA.
Sci Rep. 2022 Feb 14;12(1):2428. doi: 10.1038/s41598-022-05945-x.
Wildfires increase runoff and sediment yields that impact downstream ecosystems. While the effects of wildfire on stream water quality are well documented, oceanic responses to wildfire remain poorly understood. Therefore, this study investigated oceanic responses to the 2018 Woolsey Fire using satellite remote sensing and in situ data analyses. We examined 2016-2020 turbidity plume (n = 192) and 2008-2020 fecal indicator bacteria (FIB, n = 15,015) measurements at variable proximity to the Woolsey Fire. Shifts in coastal water quality were more pronounced in the "inside" region, which drained the burn area. The inside region experienced 2018-2019 plume surface area monthly means that were 10 and 9 times greater than 2016-2017 and 2017-2018 monthly means, respectively. Further, linear regressions showed that 2018-2019 three-day precipitation totals produced plumes of greater surface area. We also noted statistically significant increases in the inside region in 2018-2019 total coliform and Enterococcus monthly means that were 9 and 53 times greater than 2008-2018 monthly means, respectively. These results indicate that sediment and microbial inputs to coastal ecosystems can increase substantially post-wildfire at levels relevant to public and environmental health, and underscore the benefit of considering remote sensing and in situ measurements for water quality monitoring.
野火会增加径流量和泥沙产量,从而影响下游生态系统。虽然野火对溪流水质的影响已有大量记录,但海洋对野火的反应仍知之甚少。因此,本研究利用卫星遥感和现场数据分析,调查了 2018 年伍尔西火灾对海洋的影响。我们检查了距离伍尔西火灾不同距离的 2016-2020 年浊度羽流(n=192)和 2008-2020 年粪大肠菌群(FIB,n=15015)测量值。沿海水质的变化在“内部”区域更为明显,该区域排泄了燃烧区。内部区域经历的 2018-2019 年羽流表面积月平均值分别比 2016-2017 年和 2017-2018 年月平均值大 10 倍和 9 倍。此外,线性回归表明,2018-2019 年三天的降水总量产生了更大表面积的羽流。我们还注意到,在 2018-2019 年,内部区域的总大肠菌群和肠球菌月平均值分别比 2008-2018 年月平均值高 9 倍和 53 倍,这表明在野火后,沉积物和微生物输入到沿海生态系统的量会大幅增加,达到与公共和环境健康相关的水平,这突显了考虑遥感和现场测量进行水质监测的益处。