Simultaneous nutrient-abundant hydroponic wastewater treatment, direct carbon capture, and bioenergy harvesting using microalgae-microbial fuel cells

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24
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30

초록

Hydroponics has increasingly been recognized as an important agricultural method due to its stable crop yields under rapidly changing environmental conditions. However, the efficient treatment of nutrient-rich hydroponic wastewater remains a major challenge. This study investigates the effect of anodic pH on the performance of microalgae-microbial fuel cells (mMFCs), focusing on bioelectricity generation, photosynthetic oxygen supply, nutrient removal and recovery, and carbon capture. The mMFC system achieved a maximum power density of 122.5 mW/m2, a chemical oxygen demand removal efficiency of 93.7 %, and an anode-side total nitrogen removal efficiency of 27.5 % at an acidic anodic pH. In addition, the cathode chamber had a total ammonium nitrogen removal efficiency of 22.6 %, which was ascribed to a combination of ammonium migration and subsequent nitrogen assimilation, and a phosphate removal efficiency of 100 %, likely due to microalgal uptake and adsorption. The mMFC also effectively captured CO2 with an algal biomass yield of 0.01379 g.L- 1.d- 1 and a COQ fixation rate of 0.02528 g.L- 1.d- 1. These findings provide insights into the optimization of mMFCs as a sustainable solution for managing nutrient-rich hydroponic wastewater, contributing to energy-efficient and resource-recovering wastewater treatment technologies.

키워드

Microalgae-microbial fuel cell; Hydroponic wastewater; Nutrient removal; Energy recovery; Carbon capture; ELECTRICITY-GENERATION; PERFORMANCE; PHOTOBIOREACTOR; CULTIVATION; EFFICIENCY; REMOVAL; PH
제목
Simultaneous nutrient-abundant hydroponic wastewater treatment, direct carbon capture, and bioenergy harvesting using microalgae-microbial fuel cells
저자
Yolanda, Yustika Desti; Kim, Sangsik; Sohn, Weonjung; Shon, Ho Kyong; Yang, Euntae; Lee, Sungyun
DOI
10.1016/j.dwt.2024.100941
발행일
2025-01
유형
Article
저널명
Desalination and Water Treatment
권
321