2026/04/13 更新

お知らせ

 

写真a

クロダ マオ
黒田 真央
KURODA MAO
所属
応用力学研究所 附属海洋プラスチック研究センター 助教
職名
助教
外部リンク

学位

  • 海洋科学

論文

  • Settling and Along-Isopycnal Subduction of Small Microplastics Into Subsurface Layers of the Western North Pacific Ocean 査読

    Kuroda, M; Isobe, A; Uchida, K; Hagita, R; Hamada, S

    ENVIRONMENTAL SCIENCE & TECHNOLOGY   59 ( 38 )   20716 - 20725   2025年9月   ISSN:0013-936X eISSN:1520-5851

     詳細を見る

    担当区分:筆頭著者   記述言語:英語   出版者・発行元:Environmental Science and Technology  

    The vertical distribution of small microplastics (SMPs; 10–300 μm in size) and its relation to water masses were investigated through seawater sampling and hydrographic surveys from the sea surface to 1000 m in the North Pacific Ocean. The average ± standard deviation of SMP concentrations in 12 layers at four stations was 6910 ± 2620 particles m<sup>–3</sup>. Concentrations were high in isopycnal layers between potential densities of 23 and 25σ<inf>θ</inf>(100–300 m depths). Elevated concentrations were also frequently detected below the North Pacific Intermediate Water (NPIW), characterized by a salinity minimum around the 26.6–27.0σ<inf>θ</inf>(approximately 600 m depth) isopycnal layers. A simple modeling approach to reproduce the observed SMP distribution suggested two pathways for SMPs floating in surface convergence zones. One pathway is the weak settling of SMPs of which the density becomes close to neutral, causing the along-isopycnal subduction from isopycnal layers outcropping at the sea surface to subsurface layers above the NPIW. Therefore, the global inventory of weakly settling near-neutral SMPs is expected to be high in the subsurface layers. Meanwhile, the strong settling via biological processes causes the other pathway from the surface euphotic layer to deep layers that never outcrop at the sea surface.

    DOI: 10.1021/acs.est.5c08983

    Web of Science

    Scopus

    PubMed

  • Abundance and potential sources of floating polystyrene foam macro- and microplastics around Japan 査読

    Kuroda, M; Isobe, A; Uchida, K; Tokai, T; Kitakado, T; Yoshitake, M; Miyamoto, Y; Mukai, T; Imai, K; Shimizu, K; Yagi, M; Mituhasi, T; Habano, A

    SCIENCE OF THE TOTAL ENVIRONMENT   925   171421   2024年5月   ISSN:0048-9697 eISSN:1879-1026

     詳細を見る

    担当区分:筆頭著者   記述言語:英語   出版者・発行元:Science of the Total Environment  

    Polystyrene foam is widely used due to its lightweight, impact resistance, and excellent thermal insulation properties. Meanwhile, weak adhesion between beads in polystyrene foam leads to fragmentation, generating a substantial amount of microplastics (<5 mm). Such polystyrene foam debris littered on beaches diminishes the aesthetic value of coastal areas, negatively impacting tourism. Due to its density lower than other plastics, polystyrene foam macroplastics float on the sea surface and, thus, they are significantly influenced by wind drag during oceanic transport. In contrast, polystyrene foam microplastics drifting beneath the sea surface are carried mostly by ocean currents. These properties of polystyrene foam macroplastics and microplastics hinder the elucidation of their transport, distribution, and fate in nature, despite their potential to adversely impact marine ecosystems. To elucidate the generation, transport, and fragmentation processes of polystyrene foam ocean plastics, we conducted concurrent visual observations and surface net towing from seven training vessels around Japan during 2014–2020. Overall, the abundances of polystyrene foam ocean plastics were higher in the Sea of Japan than in the North Pacific south of Japan. The average abundances of polystyrene foam microplastics and macroplastics were 0.33 pieces/m<sup>3</sup> and 0.45 pieces/km, respectively, over the entire sea area around Japan. In the Sea of Japan, the peak abundances of polystyrene foam macroplastics occurred in upstream of the Tsushima Current, while the peak for microplastics occurred downstream, suggesting that continuous fragmentation occurred during transport between the two peaks. Backward-in-time particle tracking model experiments suggested that the sources of polystyrene foam macroplastics observed in the Sea of Japan included aquaculture buoys and styrene debris beached around the Tsushima Strait. The present study demonstrated that reducing the release of polystyrene foam aquaculture floats will likely diminish the abundance of ocean plastics in the Sea of Japan.

    DOI: 10.1016/j.scitotenv.2024.171421

    Web of Science

    Scopus

    PubMed

  • 我が国沖合海域における海洋プラスチックごみ調査の規準化およびデータベース整備

    清水 健一, 萩田 隆一, 内田 圭一, 山中 有一, 磯辺 篤彦, 三橋 廷央, 今井 圭理, 黒田 真央, 八木 光晴, 向井 徹

    日本水産学会誌   89 ( 5 )   394 - 397   2023年9月   ISSN:00215392 eISSN:1349998X

     詳細を見る

    記述言語:日本語   出版者・発行元:公益社団法人 日本水産学会  

    DOI: 10.2331/suisan.wa3079

    Web of Science

    Scopus

    CiNii Research

  • 練習船による漂流・海底ごみ調査からみた日本周辺海域の海洋プラスチックごみの現状について

    東海 正, 北門 利英, 黒田 真央, 今井 圭理, 八木 光晴, 清水 健一, 山中 有一, 幅野 明正, 内田 圭一, 向井 徹, 三橋 廷央, 磯辺 篤彦

    日本プランクトン学会報   69 ( 2 )   105 - 106   2022年8月   ISSN:03878961 eISSN:24340839

     詳細を見る

    記述言語:日本語   出版者・発行元:日本プランクトン学会  

    「練習船による漂流・海底ごみ調査からみた日本周辺海域の海洋プラスチックごみの現状について」の講演要旨

    DOI: 10.24763/bpsj.69.2_105_2

    CiNii Research

共同研究・競争的資金等の研究課題

  • 海表面下におけるマイクロプラスチック鉛直分布への影響要因の解明

    研究課題/領域番号:23KJ1682  2023年4月 - 2026年3月

    科学研究費助成事業  特別研究員奨励費

    黒田 真央

      詳細を見る

    資金種別:科研費

    本研究では、日本沖合、インド洋、北太平洋の表層~深層(0-1000 m)を対象として、CTD 観測と海水サンプルによるマイクロプラスチック(MPs)の採集を行う。各海域、各深度で得られたMPsの存在量やサイズ、材質等をCTDの観測データから推測される混合や水塊、海流等と照らし合わせ、海表面下におけるMPsの鉛直分布に影響をもたらす要因について明らかにする。また、調査船舶クリーンブース内にて海水サンプルからMPsを回収し、その回収精度を調べることによって、従来よりもサンプル輸送時のコンタミネーションが少なく、かつ揺れのある船内においても危険のない高精度なMPs回収方法の確立を目指す。

    CiNii Research