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Synergistic integration of floating wetlands and microbial fuel cells via plant-microbe-electrode interactions

delete2026-06-03
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OA
AI
J
Joanna Strycharz *
N
Nicole Nawrot
P
Przemysław Kowal
M
Martyna Godzieba
K
Karolina Matej-Łukowicz
B
Bartosz Szeląg
S
Sławomir Ciesielski
E
Ewa Wojciechowska
DOI:10.1016/j.ecoleng.2026.108041delete
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Abstract

Abstract

En 中文
• FTW-MFC system achieved 97% nitrification and 94% organic removal, confirming its treatment resilience. • Electro-stimulation mitigated plant stress, boosting chlorophyll and Fv/fm 3-fold. • Diurnal voltage patterns reveal the system functions as a solar-driven photobioreactor. • Electrodes engineered cooperative rhizosphere networks rich in Hydrogenophaga and Cereibacter. • Integrated systems achieved superior ecosystem stability compared to passive floating wetlands.
Keywords:
Nature-based solutions
Rhizosphere microbiome
Photosynthesis
Microbial fuel cells
Photobioreactor
Renewable energy
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Journal

Ecological Engineering cover
Ecological Engineering
IF:
4.1
Papers:
6.9K
Citations:
2.2W

Organization

U
University of Warmia and Mazury
Scholars:
498
Papers: 244
Citations: 27
Kielce University of Technology cover
Kielce University of Technology
Scholars:
667
Papers: 712
Citations: 322
F
faculty of civil and environmental engineering
Scholars:
110
Papers: 56
Citations: 0
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