First / corresponding-author papers are listed.
Full list on ResearchGate.
Keywords: Microbial fuel cell; Environmental remediation; Environmental monitoring
* Corresponding author
Microbial fuel cell
Zero-valent iron-induced electric field enhancing ion migration and organic carbon oxidation for high-performance sediment microbial fuel cells
電場の形成による土壌中有機物分解の促進
NB Shabudin, U Sholikah, T Hibino, K Kim*
preprint
Environmental monitoring
A fuel-cell-type seabed-level sensor for monitoring bathymetric evolution
海底の地形変化を監視する自己発電型センサーの開発 link
K Kim*, T Hibino, Y Nakagawa
Estuarine, Coastal and Shelf Science (2025)
Environmental remediation
Carbon sequestration in coastal sediments via in situ capping with steel slag
鉄鋼スラグ干潟の炭素固定メカニズムの解明とその量の推算 link
K Kim*, S Nakashita, U Sholikah, Y Doida, T Hibino
Journal of Cleaner Production (2024)
Environmental monitoring
Machine learning-based prediction of seasonal hypoxia in eutrophic estuary using capacitive potentiometric sensor
機械学習と自己発電センサーを用いた貧酸素水塊の発生の予測 link
S Park, K Kim, T Hibino, K Kim*
Marine Environmental Research (2024)
Environmental monitoring
An antifouling redox sensor with a flexible carbon fiber electrode for machine learning-based dissolved oxygen prediction in severely eutrophic waters
機械学習と自己発電センサーを用いた年間溶存酸素変動要因の解明 link
S Park, K Kim, T Hibino, Y Sakai, T Furukawa, K Kim*
Water (2023)
Microbial fuel cell
Sediment microbial fuel cells in oxidative sedimentary environments using iron substrate as voltage booster
土壌の性質が微生物燃料電池の性能に与える影響の解明 link
K Kim, T Takahashi, R Yumioka, T Hibino*
Journal of Power Sources (2023)
Environmental monitoring
High-resolution monitoring of seasonal hypoxia dynamics using a capacitive potentiometric sensor: Capacitance amplifies redox potential
溶存酸素の濃度を増幅して感知する電気化学センサーの開発 link
K Kim, Y Nakagawa, T Takahashi, R Yumioka, T Hibino*
Science of The Total Environment (2022)
Microbial fuel cell, Environmental remediation
In situ electrochemical remediation of brackish river sediment rich in aromatic organic matter using steel-slag-combined sediment microbial fuel cells
土壌中の有機炭素を固定/分解する電気化学的手法の構築 link
K Kim, S Nakashita, K Yoshimura, T Hibino*
Journal of Cleaner Production (2021)
Microbial fuel cell
Enhanced power performance of an in situ sediment microbial fuel cell with steel-slag as the redox catalyst: I. electricity generation
微生物燃料電池の実用化に向けた産業副産物ベース昇圧材料の実証 link
K Kim, S Nakashita*, T Hibino
Sustainable Energy & Fuels (2020)
Environmental remediation
Remediation of contaminated intertidal sediment by increasing permeability using active capping material
泥の透水性を高める石炭灰ベース材料の開発 link
K Kim, K Kim*
Journal of Environmental Management (2019)
Environmental remediation
Quantitative measurement on removal mechanisms of phosphate by class–F fly ash
石炭灰がリン酸塩を除去する二つのメカニズムの定量的解明 link
K Kim, K Kim*, S Asaoka, IC Lee, DS Kim, S Hayakawa
International Journal of Coal Preparation and Utilization (2018)