Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate

Conventional treatment methods of landfill leachate concentrate mainly focus on the degradation or removal of humic substance, which are prone to secondary pollution and fail to meet the requirements of current sustainable development. The key to sustainable management of landfill leachate concentra...

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Main Authors: Jiale Du, Zijian Yu, Jiangjing Li, Shuangling Xie, Lianxin Chen, Jiuyang Lin
Format: Article
Language:English
Published: KeAi Communications Co. Ltd. 2024-01-01
Series:Advanced Membranes
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Online Access:http://www.sciencedirect.com/science/article/pii/S2772823424000174
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author Jiale Du
Zijian Yu
Jiangjing Li
Shuangling Xie
Lianxin Chen
Jiuyang Lin
author_facet Jiale Du
Zijian Yu
Jiangjing Li
Shuangling Xie
Lianxin Chen
Jiuyang Lin
author_sort Jiale Du
collection DOAJ
description Conventional treatment methods of landfill leachate concentrate mainly focus on the degradation or removal of humic substance, which are prone to secondary pollution and fail to meet the requirements of current sustainable development. The key to sustainable management of landfill leachate concentrate is to precisely fractionate the existing humic substance and inorganic salts as individual resources. Here, electro-driven nanofiltration membranes were fabricated by sodium periodate inducing co-deposition of pyrogallol and polyethyleneimine on the loose polyamide-based nanofiltration substrate membranes as high-performance anion conducting membrane. The pyrogallol/polyethyleneimine composite coating layer endowed the electro-driven nanofiltration membranes with reduced surface negative charge and specific areal electric resistance for enhanced anion transfer. During the electro-driven nanofiltration process, the fabricated membrane with a 30-min co-deposition exhibited an extremely fast anion transfer rate and outstanding fractionation performance with 99.08 ​% humic substance recovery of 99.08 ​%. Particularly, the fabricated membrane showed stable separation capacity over an 8-cycle electro-driven nanofiltration operation, demonstrating a low fouling propensity. Our study sheds light on the strategy to fabricate high-performance electro-driven nanofiltration membranes via co-deposition of pyrogallol and polyethyleneimine, paving the way to sustainable treatment of landfill leachate concentrate.
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publisher KeAi Communications Co. Ltd.
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spelling doaj-art-66bc2a3be0bf4434ba43aede0aa92e262025-08-20T02:40:10ZengKeAi Communications Co. Ltd.Advanced Membranes2772-82342024-01-01410010610.1016/j.advmem.2024.100106Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrateJiale Du0Zijian Yu1Jiangjing Li2Shuangling Xie3Lianxin Chen4Jiuyang Lin5College of Environment and Safety Engineering, Fuzhou University, Fuzhou, 350116, ChinaCollege of Environment and Safety Engineering, Fuzhou University, Fuzhou, 350116, ChinaCollege of Environment and Safety Engineering, Fuzhou University, Fuzhou, 350116, ChinaCollege of Environment and Safety Engineering, Fuzhou University, Fuzhou, 350116, ChinaCollege of Environment and Safety Engineering, Fuzhou University, Fuzhou, 350116, ChinaKey Laboratory of Rare Earths, Chinese Academy of Sciences, Ganzhou, 341000, China; Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou, 341000, China; Corresponding author. Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou, 341000, China.Conventional treatment methods of landfill leachate concentrate mainly focus on the degradation or removal of humic substance, which are prone to secondary pollution and fail to meet the requirements of current sustainable development. The key to sustainable management of landfill leachate concentrate is to precisely fractionate the existing humic substance and inorganic salts as individual resources. Here, electro-driven nanofiltration membranes were fabricated by sodium periodate inducing co-deposition of pyrogallol and polyethyleneimine on the loose polyamide-based nanofiltration substrate membranes as high-performance anion conducting membrane. The pyrogallol/polyethyleneimine composite coating layer endowed the electro-driven nanofiltration membranes with reduced surface negative charge and specific areal electric resistance for enhanced anion transfer. During the electro-driven nanofiltration process, the fabricated membrane with a 30-min co-deposition exhibited an extremely fast anion transfer rate and outstanding fractionation performance with 99.08 ​% humic substance recovery of 99.08 ​%. Particularly, the fabricated membrane showed stable separation capacity over an 8-cycle electro-driven nanofiltration operation, demonstrating a low fouling propensity. Our study sheds light on the strategy to fabricate high-performance electro-driven nanofiltration membranes via co-deposition of pyrogallol and polyethyleneimine, paving the way to sustainable treatment of landfill leachate concentrate.http://www.sciencedirect.com/science/article/pii/S2772823424000174Electro-driven nanofiltrationCo-depositionPyrogallol-based modificationResource recoveryLandfill leachate concentrate
spellingShingle Jiale Du
Zijian Yu
Jiangjing Li
Shuangling Xie
Lianxin Chen
Jiuyang Lin
Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
Advanced Membranes
Electro-driven nanofiltration
Co-deposition
Pyrogallol-based modification
Resource recovery
Landfill leachate concentrate
title Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
title_full Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
title_fullStr Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
title_full_unstemmed Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
title_short Design of high-performance electro-driven nanofiltration membrane via facile co-deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
title_sort design of high performance electro driven nanofiltration membrane via facile co deposition of pyrogallol and polyethyleneimine for sustainable resource recovery from landfill leachate concentrate
topic Electro-driven nanofiltration
Co-deposition
Pyrogallol-based modification
Resource recovery
Landfill leachate concentrate
url http://www.sciencedirect.com/science/article/pii/S2772823424000174
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