The Distribution and Fate of Microplastic Pollution in Polar Environments: From the Canadian Arctic to the South Pole
The Distribution and Fate of Microplastic Pollution in Polar Environments: From the Canadian Arctic to the South Pole
批准号:
1920672
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --
中文摘要
多种同时存在的应激源对海洋生态系统/服务构成了有害的全球威胁,了解这些环境扰动对海洋生物群的协同影响仍然是一项重大挑战。已经认识到海洋酸化和微塑料对浮游动物功能和健康的负面影响(即Manno等人)。2016年;科尔等人。2016)。最近,有人假设浮游动物(及其粪便颗粒)可能在海洋生态系统中微塑料的垂直通量中发挥重要作用(Clark等人。2016)。然而,这两种人为应激源的协同影响仍未被探索。南大洋(SO)由于天然的高二氧化碳吸收和低碳酸盐饱和度水平,预计将受到海洋酸化的特别影响。此外,SO已被强调为微塑料将与生物群有显著重叠的一个区域(Worm,2015)。在SO中,北斯科舍海包含了迄今为止测量到的最大的大气二氧化碳季节性吸收。在这一区域,浮游动物可以对深海碳输出(快速下沉粪便颗粒的槽生产)和食物链(因为高营养级捕食者的关键猎物)做出重大贡献。人为多应激源对浮游动物群落的负面影响可能反过来影响海洋生态系统和生物地球化学循环。合理与资源:调查OA和微塑料对北斯科舍海主要浮游动物类群(桡足类和翼足类)的多应激源效应。还将调查对碳向深海出口的潜在影响。成功的候选人将在BAS从事沉积物捕集器样本档案的工作。候选人将参加一次海上求生抽样活动,为此他/她将接受海上求生技术培训。在船上,学生将参与采集浮游动物网样本并进行孵化实验。具体目标:1.评估对人为应激源协同影响的生理反应:在采样活动中,学生将在人工控制的海水中进行浮游动物的孵化,以检查它们对模拟的OA和微塑料协同应激的反应。这些测量将包括死亡率、呼吸频率、氨排泄率、粪便颗粒产量和产蛋量。将对样本进行稳定同位素分析,以确定应激源暴露对同位素特征的影响。为了量化浮游动物作为微塑料进入深海的驱动力的作用-博士生将通过调查从深海系泊沉积物陷阱(1500-2000米)收集的样本来评估进入深海的“微塑料通量”的季节和年际变化。他/她将量化下沉颗粒中的微塑料总量以及粪便颗粒和浮游动物体内的具体贡献。蠕虫,海洋中寂静的春天,鲍里斯·蠕虫,美国国家安全局,第112,752-11753(2015年)-J。R.Clark,M.Cole,P.K.Lindeque,J.Blackford,E.Fileman,C.Lewis,T.M.Lenton和T.S.Gloway,海洋微塑性碎片:理解和定量的目标计划
英文摘要
A multitude of concurrent stressors pose a pernicious, global threat to marine ecosystems /services and understanding the synergic impact of these environmental perturbations to marine biota remains a major challenge. The negative impact of Ocean Acidification (OA) and microplastics on zooplankton function and health has been already recognised (i.e. Manno et al. 2016; Cole et al. 2016). Recently, It has been hypothesised that zooplankton (and their faecal pellets) may play a significant role in the vertical flux of microplastics in pelagic ecosystems (Clark et al. 2016). However the synergistic impact of both anthropogenic stressors is still unexplored. The Southern Ocean (SO) is predicted to be particularly affected by OA due to naturally high CO2 ocean uptake and low carbonate saturation levels. Further, the SO has been highlighted as a region in which microplastics will have significant overlap with biota (Worm, 2015). Within the SO, the Northern Scotia Sea contains the largest seasonal uptake of atmospheric carbon dioxide measured yet. In this region, zooplankton can contribute significantly to the deep ocean carbon export (trough production of fast sinking faecal pellets) and to the food web (because key prey to high trophic level predators). A negative impact of the anthropogenic multi-stressors on the zooplankton community may in turn affect both marine ecosystem and biogeochemical cycles.Rationale and resources: to investigate the multi-stressors effect of OA and microplastics on key zooplankton taxa (copepods and pteropods) in the Northern Scotia Sea. The potential effect on the carbon export to the deep ocean will also be investigated. The successful candidate will work on the sediment trap samples archive at BAS. The candidate will participate in one SO sampling campaign for which he/she will receive training in sea-survival techniques. On board, the student will participate in collection of zooplankton net samples and run incubation experiments.Specific objectives:1. To assess physiological response to the synergic impact of anthropogenic stressors: During a sampling campaign, the student will undertake incubations of zooplankton in manipulated seawater to examine their response to the simulated OA and microplastic synergistic stress. The measurements will include mortality, respiration rates, ammonia excretion rates, faecal pellets production and egg production. Stable isotopes analysis will be performed on samples to identify the effect of stressors exposure on the isotopic signature.2. To quantify the role of zooplankton as drivers of microplastics to the deep ocean- The PhD candidate will assess the seasonal and interannual variability of "microplastic flux" to the deep ocean by investigating samples collected from deep moored sediment traps (1500-2000 m). He/she will quantify the total microplastic amount in the sinking particles and the specific contribution included in faecal pellets and zooplankton carcasses.References-B. Worm, Silent spring in the ocean Boris Worm, PNSA, 112, 752-11753 (2015)-J. R. Clark, M. Cole, P. K Lindeque, J. Blackford, E. Fileman, C. Lewis, T. M Lenton and T. S. Galloway, Marine microplastic debris: a targeted plan for understanding and quant
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批准号:81071724
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项目类别:面上项目
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资助金额:32.0万元
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批准年份:2010
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负责人:杨小昂
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依托单位:
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项目类别:面上项目
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资助金额:29.0万元
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批准年份:2009
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负责人:徐世晓
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依托单位: