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Performance Evaluation of Bismuth Oxychloride (BiOCl)-Doped Functionalized Graphene Oxide Membranes
by
Sun, Ao
, Qiao, Sanyuan
, Fan, Zhenzhong
, Tong, Qilei
, Cai, Li
in
Bismuth
/ Contact angle
/ Crude oil
/ Diethylene triamine
/ Graphene
/ Membranes
/ Oil
/ Performance evaluation
/ Physicochemical properties
/ Vacuum filtration
/ Wastewater treatment
/ Wettability
2025
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Performance Evaluation of Bismuth Oxychloride (BiOCl)-Doped Functionalized Graphene Oxide Membranes
by
Sun, Ao
, Qiao, Sanyuan
, Fan, Zhenzhong
, Tong, Qilei
, Cai, Li
in
Bismuth
/ Contact angle
/ Crude oil
/ Diethylene triamine
/ Graphene
/ Membranes
/ Oil
/ Performance evaluation
/ Physicochemical properties
/ Vacuum filtration
/ Wastewater treatment
/ Wettability
2025
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Performance Evaluation of Bismuth Oxychloride (BiOCl)-Doped Functionalized Graphene Oxide Membranes
by
Sun, Ao
, Qiao, Sanyuan
, Fan, Zhenzhong
, Tong, Qilei
, Cai, Li
in
Bismuth
/ Contact angle
/ Crude oil
/ Diethylene triamine
/ Graphene
/ Membranes
/ Oil
/ Performance evaluation
/ Physicochemical properties
/ Vacuum filtration
/ Wastewater treatment
/ Wettability
2025
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Performance Evaluation of Bismuth Oxychloride (BiOCl)-Doped Functionalized Graphene Oxide Membranes
Journal Article
Performance Evaluation of Bismuth Oxychloride (BiOCl)-Doped Functionalized Graphene Oxide Membranes
2025
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Overview
Graphene and its derivatives, characterized by their ultra-high water flux, unique physicochemical properties, and tunable layered structures, have increasingly emerged as a new generation of membrane materials for wastewater treatment. In this study, a novel membrane material was fabricated via vacuum filtration using BiOCl-doped graphene oxide (GO) modified with diethylenetriamine. This modified GO membrane exhibits excellent wettability, with a water contact angle of 0° in air and an oil contact angle of 144.5° underwater. It demonstrates a separation efficiency of 95.2% for kerosene emulsified oil and 90.2% for crude oil emulsified oil. Additionally, this paper provides a detailed investigation into the mechanism by which the membrane material separates emulsified oils, offering new insights for the treatment of oily wastewaters.
Publisher
EDP Sciences
Subject
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