Rchr
J-GLOBAL ID:200901026424837293   Update date: Feb. 01, 2024

Harada Naoki

ハラダ ナオキ | Harada Naoki
Affiliation and department:
Job title: Professor
Research field  (4): Landscape science ,  Environmental agriculture ,  Environmental load reduction/restoration technology ,  Plant nutrition, soil science
Research theme for competitive and other funds  (11):
  • 2021 - 2024 Removal of Cesium in Soil Solution by Zeolite Produced from Fly Ash
  • 2020 - 2023 Establishment of a separation and quantification method for microplastics in agricultural soil and clarification of the actual contamination status
  • 2019 - 2022 Behavior of radiocesium derived from irrigation water in paddy fields and its effects on radioactivity in rice
  • 2018 - 2022 Ecological effects and toxicity caused by neonicotinoid pesticides
  • 2014 - 2017 Why is the concentration of radiocesium in rice near water inlet high?
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Papers (67):
  • Seda Ozer Bodur, Solomon Oloruntoba Samuel, Kazuki Suzuki, Naoki Harada, Rasit Asiloglu. Nitrogen-based fertilizers differentially affect protist community composition in paddy field soils. Soil Ecology Letters. 2024. 6. 3
  • Irem Bagci, Kazuki Suzuki, Rasit Asiloglu, Naoki Harada. The Application of Organic Matter Temporarily Shifts Carrot Prokaryotic Communities in the Endosphere but Not in the Rhizosphere. Microorganisms. 2023. 11. 10. 2377-2377
  • Kazuki Suzuki, Kana Katashima, Takaaki Miki, Hajime Igarashi, Qicong Xu, Shinji Ohkubo, Shinji Iwaishi, Naoki Harada. Bacterial Community Composition Under Paddy Conditions Is More Strongly Affected by the Difference in Soil Type than by Field Management. Microbial Ecology. 2023
  • Solomon Oloruntoba Samuel, Kazuki Suzuki, Rasit Asiloglu, Naoki Harada. Rice endophytic communities are strongly dependent on microbial communities specific to each soil. Biology and Fertility of Soils. 2023. 59. 7. 733-746
  • Mayu Fujino, Kazuki Suzuki, Naoki Harada, Rasit Asiloglu. Protists modulate active bacterial community composition in paddy field soils. Biology and Fertility of Soils. 2023. Accepted. 7. 709-721
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MISC (8):
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Books (3):
  • 土壌微生物学
    2018
  • 農と土のある暮らしを次世代へ-原発事故からの農村の再生
    コモンズ 2018
  • BISHAMONの軌跡-II -福島支援5年間の記録
    2016
Lectures and oral presentations  (100):
  • P3-1-3 有機及び慣行水田における土壌微生物群集構造の比較-長野および宮城におけるケーススタディ-(ポスター,3-1 土壌生物の生態と機能,2018年度神奈川大会)
    (日本土壌肥料学会講演要旨集 2018)
  • 8-1-28 改植による桑の葉の<sup>137</sup>Cs 濃度の低減(8-1 環境保全,2016年度佐賀大会)
    (日本土壌肥料学会講演要旨集 2016)
  • 8-1-13 水田の水口付近における土壌及びイネの放射性セシウム濃度の分布(8-1 環境保全,2016年度佐賀大会)
    (日本土壌肥料学会講演要旨集 2016)
  • P8-1-16 桑園における放射性Csの吸収特性と吸収抑制法の検討(ポスター,8-1 環境保全,2015年度京都大会)
    (日本土壌肥料学会講演要旨集 2015)
  • P8-1-4 農業用水がイネの放射性セシウム濃度に与える影響 : 流下試験による検討(ポスター,8-1 環境保全,2015年度京都大会)
    (日本土壌肥料学会講演要旨集 2015)
more...
Professional career (1):
  • 博士(農学) (東京大学)
Work history (5):
  • 2018/04 - 現在 Niigata University Graduate School of Science and Technology Specialized Course of Life and Food Sciences Professor
  • 2018/04 - 現在 Niigata University Faculty of Agriculture Department of Agriculture Professor
  • 2017/04/01 - 2018/03/31 Niigata University Faculty of Agriculture Department of Agriculture Associate Professor
  • 2007/04 - 2018/03 Niigata University Graduate School of Science and Technology Specialized Course of Life and Food Sciences Associate Professor
  • 2007/04/01 - 2017/03/31 Niigata University Faculty of Agriculture Department of Applied Biological Chemistry Associate Professor
Association Membership(s) (4):
日本ヒ素研究会 ,  日本有機農業学会 ,  日本土壌微生物学会 ,  日本土壌肥料学会
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