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◆ Environmental Science & Technology2025-12-12· Membrane

Hierarchical-Porous Gas-Permeable Membrane toward Efficient and Robust Ammonia Recovery

Haoquan Zhang, Hou–Yong Yu, Zhan Wang, Yue Qing, Minyuan Han, Ye Jin, Le Han

原始摘要(英文原文)· Original abstract
The ammonia recovery from wastewater via a concentration-driven membrane stripping process is highly promising yet constrained by the trade-off issue between ammonia permeability and antiwettability of hydrophobic gas-permeable membranes (GPMs). We designated a tailored hierarchical-porous GPM (HGPM) via a facile fabrication method to address the above issue and established its transfer model, clearly illustrating the ammonia diffusion across the distinct layers. Molecular diffusion across the finger-like layer of HGPMs was responsible for a superior overall mass transfer coefficient of 3.3 × 10 –5 m/s. Meanwhile, its nanoscale pores in the top-skin and sponge-like layers conferred commendable wetting resistance against neighboring alkaline or acidic liquids, with the liquid entrance pressure measured at 182 kPa. The hierarchy of HGPMs together achieved the best-ever balance between ammonia permeability and antiwettability (both increased up to ∼150–200% of the commercial GPMs), significantly breaking the upper bound limit. Dealing with the real wastewater from anaerobic digestate, HGPMs demonstrated a robust ammonia recovery flux of 75–80 g N/m 2 h over 50 h, 3 times higher than that of the commercial GPMs. This work sheds light on the effective recovery of volatile valuable compounds from complex wastewater, with the as-tailored membrane of great upscalability holding great potential toward a future circular society.
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