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김귀용

Kim, Kwiyong
Redox and electrochemistry advancing clean technologies Lab.
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Electrochemical recovery of nutrients from human urine coupled with biogas upgrading

Author(s)
Kim, HanwoongPark, HuijuKim, KwiyongLee, Changsoo
Issued Date
2024-02
DOI
10.1016/j.biortech.2023.130298
URI
https://scholarworks.unist.ac.kr/handle/201301/81488
Citation
BIORESOURCE TECHNOLOGY, v.394, pp.130298
Abstract
This study explored the coupling of electrochemical nutrient recovery from human urine with biogas upgrading. Ammonia nitrogen-rich (>= 300 mM) and alkaline (>= pH 9) hydrolyzed urine (HU) is a promising alternative CO2 solvent. Spent urine after biogas upgrading (SU), with neutralized pH and increased conductivity resulting from CO2 absorption, is advantageous over HU for recovering total ammonia nitrogen (TAN) through electro-concentration. Experiments using synthetic urine at varying applied current densities (13-77 A/m(2)) demonstrated effective TAN recovery from both HU and SU, with greater enrichment factors at higher currents (2.1-3.3-fold, 1.2-1.8 M TAN concentrate). Validation experiments using real urine at the optimized current density of 52 A/m(2), considering energy consumption, exhibited superior TAN recovery and energy efficiency when using SU (3.7-fold enrichment, 1.6 M TAN concentrate; suitable for liquid fertilizer) compared to HU. These findings offer an advanced strategy for maximizing urine valorization, contributing to a circular economy.
Publisher
ELSEVIER SCI LTD
ISSN
0960-8524
Keyword (Author)
Ammonia nitrogenCarbon dioxide absorptionElectro-concentrationNutrient recoverySource -separated urine
Keyword
AMMONIACAPTURECO2ABSORPTIONSEPARATIONFERTILIZERENERGYGAS

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