Comparative Assessment of the Impacts of Wildland-Urban Interface Fire Ash on Growth of the Diatom Thalassiosira weissflogii.

IF 4.3 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanomaterials Pub Date : 2025-03-09 DOI:10.3390/nano15060422
Talal Alshehri, Amar Yasser Jassim, Bo Cai, Tammi L Richardson, Mohammed Baalousha
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Abstract

Fires at the wildland-urban interface (WUI) result in the release of ash into the atmosphere that can be transported for long distances and deposited on land and in oceans. Wildfire ash has the potential to increase phytoplankton biomass in the open ocean by providing both major nutrients and trace metals. However, fires that originate at the WUI contain potentially toxic concentrations of metals such as Ti, Cr, Cu, Pb, and Zn, especially in coastal oceans close to WUI fires, where ash deposition rates are high. Here, we investigated the impact of fire ash from different sources originating from vegetation, structures, and vehicles on growth of the diatom Thalassiosira weissflogii (T. weissflogii). The diatom was exposed to ash suspensions containing equimolar concentrations of 10 and 50 µM Fe. The concentration of potentially toxic metals (e.g., Ti, Cu, and Zn) in the exposure suspensions decreased following the order vehicle ash suspension > structural ash suspension > vegetation ash suspension. Growth rates (GR) of T. weissflogii were between 0.44 d-1 and 0.52 d-1 in the controls, and varied with ash types, following the order vegetation (GR = 0.40 d-1 to 0.48 d-1) > vehicle (GR = 0.06 d-1 to 0.46 d-1) > structure (GR = 0.02 d-1 to 0.31 d-1) ash. Two ash samples (A 131 and A136) completely inhibited the growth of T. weissflogii, possibly due to high Ti, Cu, and Zn concentrations in the form of (nano)particles. Overall, this study showed that structural and vehicle ash, with high concentrations of potentially toxic metals, significantly suppress the growth of T. weissflogii, whereas vegetation ash with high concentrations of Fe and Mn but low concentrations of potentially toxic metals had no significant beneficial or suppressive effect. High concentrations of the metals Ti, Cu, and Zn in the form of nano(particles) in structural and vehicle ash are possible sources of toxicity to diatom growth. This study provides valuable insights into the potential impacts of WUI fires on aquatic ecosystems and can inform management strategies aimed at reducing these impacts.

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林地-城市界面火灰对魏氏硅藻生长影响的比较评价。
在荒地-城市交界面(WUI)发生的火灾导致灰烬释放到大气中,这些灰烬可以长距离运输并沉积在陆地和海洋中。野火灰烬通过提供主要营养物质和微量金属,有可能增加公海浮游植物的生物量。然而,起源于WUI的火灾含有潜在有毒浓度的金属,如Ti, Cr, Cu, Pb和Zn,特别是在靠近WUI火灾的沿海海洋中,那里的灰烬沉积率很高。本文研究了植被、建筑和交通工具等不同来源的火灰对魏氏硅藻生长的影响。硅藻暴露于含有等摩尔浓度为10和50µM Fe的灰悬浮液中。暴露悬浮液中潜在有毒金属(如Ti、Cu和Zn)浓度的下降顺序为车辆悬浮液b>结构悬浮液>植被悬浮液。对照的生长速率在0.44 ~ 0.52 d-1之间,随灰分类型的不同而变化,依次为植被(GR = 0.40 ~ 0.48 d-1)、载体(GR = 0.06 ~ 0.46 d-1)、结构(GR = 0.02 ~ 0.31 d-1)灰分。两种灰分样品(a131和A136)完全抑制了weissflogii的生长,可能是由于高浓度的Ti、Cu和Zn以(纳米)颗粒的形式存在。综上所述,结构灰和车体灰均含有高浓度的潜在有毒金属,可显著抑制魏氏柽柳的生长,而高浓度Fe和Mn、低浓度潜在有毒金属的植被灰则无显著的有益或抑制作用。结构灰和车辆灰中以纳米(颗粒)形式存在的高浓度金属Ti、Cu和Zn可能是硅藻生长的毒性来源。该研究为水火对水生生态系统的潜在影响提供了有价值的见解,并可以为旨在减少这些影响的管理策略提供信息。
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来源期刊
Nanomaterials
Nanomaterials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
8.50
自引率
9.40%
发文量
3841
审稿时长
14.22 days
期刊介绍: Nanomaterials (ISSN 2076-4991) is an international and interdisciplinary scholarly open access journal. It publishes reviews, regular research papers, communications, and short notes that are relevant to any field of study that involves nanomaterials, with respect to their science and application. Thus, theoretical and experimental articles will be accepted, along with articles that deal with the synthesis and use of nanomaterials. Articles that synthesize information from multiple fields, and which place discoveries within a broader context, will be preferred. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental or methodical details, or both, must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Nanomaterials is dedicated to a high scientific standard. All manuscripts undergo a rigorous reviewing process and decisions are based on the recommendations of independent reviewers.
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