材料科学
聚苯胺
碳纳米管
化学工程
膜
多孔性
功率(物理)
膜蒸馏
导电体
水运
功率密度
海水淡化
纳米技术
复合材料
环境工程
水流
环境科学
聚合物
量子力学
聚合
生物
工程类
物理
遗传学
作者
Yue Wang,Pengrui Jin,Shushan Yuan,Zongyao Zhou,Ziwen Dai,Patricia Luis,Huanting Wang,Leen Braeken,Bart Van der Bruggen
标识
DOI:10.1002/adfm.202425757
摘要
Abstract The intricate water‐energy nexus pinpoints the necessity of simultaneously managing both resources. The effective interaction between water movement and porous materials lies at the heart of membrane processes as well as hydrovoltaic technology. Herein, an innovative water‐energy cogeneration system combining hydrovoltaic technology into membrane distillation processes is reported, leveraging hierarchically porous structures composed of polyaniline (PANI) and polydopamine (PDA)‐modified carbon nanotubes (CNTs) nanofilaments on a commercial PVDF substrate. The heat‐conductive CNTs network with the water‐rich PDA, improves thermal efficiency, enhancing water production by 17.3% compared to bare PVDF. Synergistically enhanced by efficient ion transport within the PANI network, electron accumulation along the PANI‐PDA‐CNTs direction, and the conductive nanobridge effect of CNTs, a continuous and durable power density of 2.78 µW cm −2 is achieved in the commercially available membrane filtration process. This work provides an accessible approach to concurrently addressing water and energy challenges.
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