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首页> 外文期刊>Polymers for advanced technologies >A mussel-inspired method to fabricate a novel reduced graphene oxide/Bi12O17Cl2 composites membrane for catalytic degradation and oil/water separation
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A mussel-inspired method to fabricate a novel reduced graphene oxide/Bi12O17Cl2 composites membrane for catalytic degradation and oil/water separation

机译:一种制造新型石墨烯氧化物/ Bi12O17Cl2复合材料催化降解和油/水分离的贻贝启发方法

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摘要

In this study, a novel dopamine modified graphene-based photocatalytic membrane with Bi12O17Cl2 inserted was fabricated to modify the commercial cellulose acetate membrane via vacuum filtration method. Results showed the reduced graphene oxide (RGO)/poly(dopamine) (PDA)/Bi12O17Cl2-CA photocatalytic composite membrane exhibited 98% removal efficiency for methylene blue (MB) within 100 minutes and 96% removal efficiency for 4-CP within 160 minutes. Importantly, the photocatalytic composite membrane can simultaneously achieve dye degradation and oil-water separation in only one device within a short time. And the as-prepared membrane displayed great antifouling performance and recyclability after 10 cycles. Meanwhile, the membrane showed excellent stability in the agitated water bath or different pH conditions. In summary, the photocatalytic membrane investigated in this study opens new avenue for treatment of wastewater.
机译:在该研究中,制备了一种新型多巴胺改性石墨烯基光催化膜,通过真空过滤方法修饰,通过真空过滤方法改变商业纤维素乙酸盐膜。 结果表明,氧化石墨烯(RGO)/聚(多巴胺)(PDA)/ Bi12O17Cl2-Ca光催化复合膜在100分钟内显示出98%的亚甲基蓝(MB)的去除效率,在160分钟内为4-CP的96%的去除效率 。 重要的是,光催化复合膜在短时间内仅在一个装置中同时实现染料降解和油水分离。 和制定的膜在10个循环后显示出极高的防污性能和可回收性。 同时,膜在搅拌水浴或不同的pH条件下表现出优异的稳定性。 总之,本研究中研究的光催化膜为处理废水的新途径打开了新的途径。

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