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The role of hadal zones in the long-term fate of marine microplastics: Identification of microplastics in the deep sea of the Kuril-Kamchatka Trench, Northwest Pacific (Deep-MiPoll)

The role of hadal zones in the long-term fate of marine microplastics: Identification of microplastics in the deep sea of the Kuril-Kamchatka Trench, Northwest Pacific (Deep-MiPoll)
深渊带在海洋微塑料长期命运中的作用:西北太平洋千岛堪察加海沟深海微塑料的识别(Deep-MiPoll)
批准号:
399785380
负责人:
Professorin Dr. Angelika Brandt
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2018
资助国家:
德国
项目状态:
已结题
起止时间:
2017-12-31 至 2020-12-31
关键词:

项目摘要

项目成果

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中文摘要
翻译
该项目的主要目的是对深海微塑料污染进行定性和定量识别,以更好地了解全球海洋微塑料污染的实际程度及其分布。在西北太平洋的千岛-堪察加海沟,使用多芯取样器从5 146米至9 540米的深度采集了沉积物样品。浮游生物样本的取样是用多网进行的,最大深度达到5 900米。此外,从底拖网捕捞样本中分离出较大的人为垃圾。这些样品记录在MP研究中是世界上独一无二的,将首次提供有关超深带污染的数据。样品制备将通过塑料保存方法进行,使用芬顿试剂氧化有机物,随后进行密度分离,将MP从沉积物中分离出来。分析将通过最先进的显微傅里叶变换红外光谱法进行,该方法可以精确客观地测定塑料聚合物,从而识别可能的污染源。与生物和环境参数的联系将把结果置于更广泛的背景下,并研究可能的影响。塑料污染是自然环境面临的最紧迫的人为威胁之一。海洋受到的影响尤其严重,其次是对生态系统和单一生物体的多方面负面影响。一旦引入,塑料是非常持久的,因为没有显著的生物或化学降解。相反,塑料只是倾向于破碎,导致尺寸逐渐减小的碎片数量稳步上升,即所谓的MP(<500 µm)。已经确定,相当大一部分沉入海底。因此,海底必须被假定为一个热点的MP积累和其最深的部分,超深渊区,作为海洋MP的最终汇。该项目将有助于核实深海中MP的丰度和组成。此外,还将调查丰度和成分随深度和沉积物的空间差异。日本周围的海洋被浮游塑料严重污染,Deep-MiPoll将调查水柱和超深海沉积物中MP出现之间可能的因果关系。在以前的深海MP研究中,采样达到约5500米,因此将首次生成深海和超深海区的初始数据。这将是海洋微生物调查的一大进步,有助于澄清垂直传播对一般时空分布的贡献以及深海在海洋微生物长期命运中的作用。Deep-MiPoll项目将首次采用光谱分析方法系统地研究深海样品中的MP,从而提供有关深海生态系统MP污染的高度新颖和可靠的数据。
英文摘要
This project`s main aim is the qualitative and quantitative identification of microplastic (MP) contamination of the deep sea, to gain a better insight into the actual extent of global marine MP pollution and its distribution. In the Kuril-Kamchatka Trench, NW Pacific, sediment samples were taken from depths ranging from 5146 m to 9540 m using a Multi Corer. Sampling of plankton samples was conducted by a Multi Net and reached a maximum depth of 5900 m. Additionally, bigger items of anthropogenic litter were separated from bottom trawling samples. These sample records are worldwide unique in the context of MP research and will provide data about the contamination of hadal zones for the very first time.Sample preparation will be conducted through a plastic-preserving method using Fenton`s reagent to oxidize organic matter and a subsequent density separation to separate MP from the sediments. Analyses will be performed by state-of-the-art micro-Fourier Transform Infrared spectroscopy, which allows a precise and objective determination of the plastic polymers and thus, the identification of possible pollution sources. The connection with biological and environmental parameters will place the results in a broader context and examine possible implications.Plastic contamination is one of the most urgent manmade threats for natural environments. The oceans are affected particularly, followed by multifaceted negative effects on ecosystems and single organisms. Once introduced, plastic is very persistent, since there is no significant biological or chemical degradation. Instead, plastics merely tend to be fragmented, leading to steadily rising numbers of fragments of decreasing size, the so-called MP (<500 µm). It has been ascertained that a substantial fraction sinks to the seabed. Thus, the seabed must be presumed as a hot spot of MP accumulation and its deepest parts, the hadal zones, as a final sink for marine MP. This project will contribute to verify the abundance and composition of MP in the deep sea. Furthermore, investigations on spatial differentiation of abundance and composition with depth and through the sediments will be performed. The seas around Japan are exceedingly polluted with pelagic plastic, Deep-MiPoll will investigate a possible causal link between occurrences of MP in the water column and in hadal sediments.In previous studies on MP in the deep sea, sampling reached around 5500 m, hence initial data for deep abyssal and hadal zones will be generated for the first time. This will constitute a big step forward in MP investigations and help to clarify the contribution of vertical propagation for general spatio-temporal distribution and the role of the deep sea in the long-term fate of marine MP. The Deep-MiPoll project will investigate MP in deep-sea samples using spectroscopic analyzing methods systematically for the very first time, and thus, provide highly novel and reliable data about the MP pollution of deep-sea ecosystems.
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会议论文
The influence of Larsen-C ice-cover on macrobenthic peracarid crustacean assemblages on the Antarctic shelf
  • 批准号:
    403487519
  • 项目类别:
    Infrastructure Priority Programmes
  • 资助金额:
    $0.0万
  • 财政年份:
    2018
  • 负责人:
    Professorin Dr. Angelika Brandt
  • 依托单位:
The diet of deep-sea macrobenthic isopods (Crustacea, Malacostrace) and polychaetes (Annelida) with focus on the importance of foraminiferans for their nutrition
Sea of Japan Biodiversity Studies (SoJaBio)
  • 批准号:
    171454788
  • 项目类别:
    Research Grants
  • 资助金额:
    $0.0万
  • 财政年份:
    2010
  • 负责人:
    Professorin Dr. Angelika Brandt
  • 依托单位:
Benachbarte Tiefseebecken im Vergleich: Systematische und populationsgenetische Untersuchungen zu den Nannoniscidae und Desmosomatidae
  • 批准号:
    13901497
  • 项目类别:
    Priority Programmes
  • 资助金额:
    $0.0万
  • 财政年份:
    2005
  • 负责人:
    Professorin Dr. Angelika Brandt
  • 依托单位:
海外基金