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Selective ammonium separation by capacitive deionization using binder-free MXene/PBA-coated activated carbon electrodes

  • Donglin Xie
  • , Qifeng Wang
  • , Dawei Liang*
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

Efficient ammonium (NH4+) recovery from wastewater is essential for a circular water economy. This study presents a high-performance rocking-chair capacitive deionization (RCDI) system featuring a novel binder-free MXene/Prussian Blue Analogue (PBA) composite membrane on activated carbon (AC) electrode. The assembled, 3D interlocking “nano-pier” structure prevents MXene stacking, maintaining open pathways for rapid ion transport. The optimized MXene/PBA@AC-HNO3 electrode achieves a maximum SAC of 118 mg/g at 1.6 V, while the untreated MXene/PBA@AC reaches 78 mg/g, with an NH4+/Na+ selectivity coefficient of 3.3—triple of conventional AC electrodes. Furthermore, the electrode demonstrates outstanding stability, retaining over 90% capacity after 100 cycles. Enhanced selectivity is driven by synergistic Donnan repulsion, size sieving, and specific PBA lattice affinity for partially dehydrated NH4+ ions. This work provides a robust and mechanistic framework for selective nutrient recovery from complex synthetic wastewater matrices.

Original languageEnglish
Article number120470
JournalDesalination
Volume637
DOIs
StatePublished - 1 Nov 2026

Keywords

  • Ammonium selectivity
  • Capacitive deionization (CDI)
  • MXene
  • Nutrient recovery
  • Prussian Blue Analogue (PBA)

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