Source-separated urine treatment based on forward osmosis technology: Performance, applications and future prospects

H Liu, C Wang, W Sohn, Q Wang, HK Shon, P Sun - Desalination, 2023 - Elsevier
Human urine has been historically regarded unwanted in wastewater treatment plants due
to its abundant and imbalance nutrients for biological treatment processes. Recently …

Advances on lithium, magnesium, zinc, and iron-air batteries as energy delivery devices—a critical review

AI Ikeuba, PC Iwuji, IIE Nabuk, OE Obono… - Journal of Solid State …, 2024 - Springer
This comprehensive review delves into recent advancements in lithium, magnesium, zinc,
and iron-air batteries, which have emerged as promising energy delivery devices with …

Forward osmosis integrated electrochemical systems for simultaneous recovery of struvite and energy from source-separated urine

R Sibi, P Gangadharan - Chemical Engineering Journal, 2024 - Elsevier
In this work, a novel approach to recover resources from urine has been introduced by
integrating a forward osmosis membrane into an electrochemical cell with sacrificial …

Self-powered wastewater purification and phosphorus recovery systems with novel self-filtering Al-air batteries

X Li, Y Zhou, X Ma, X Ding, S Lai, X Li, G Liu… - Chemical Engineering …, 2023 - Elsevier
Sustainable water treatment systems are crucial for water recycling and resource recovery.
However, the existing self-powered water treatment technology for metal-air batteries has …

Simultaneous Phosphate Removal and Power Generation by the Aluminum–Air Fuel Cell for Energy Self-Sufficient Electrocoagulation

X Han, H Qi, Y Qu, Y Feng, X Zhao - Applied Sciences, 2023 - mdpi.com
Featured Application The Al–air fuel cell provides an energy self-sufficient
electrocoagulation system for phosphate removal. Abstract A self-powered …

2D nanolamellar materials toward water-energy nexus applications

M Torkamanzadeh - 2023 - opus.bsz-bw.de
Electrochemical water desalination is an emerging technology known for its high efficiency
and low energy consumption in removing ions from aqueous media. The present thesis …