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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Three Dimensional Functionalized Carbon/Tin(IV) Sulfide Biofoam for Photocatalytical Purification of Chromium(VI)-Containing Wastewater
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Three Dimensional Functionalized Carbon/Tin(IV) Sulfide Biofoam for Photocatalytical Purification of Chromium(VI)-Containing Wastewater

机译:三维官能化碳/锡(iv)硫化物生物涂料,用于光催化染色(VI) - 悬浮废水

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摘要

Carbon-based materials are widely used for environmental remediation because of their unique and excellent performances. Because of the huge daily consumption of such materials, the economic and environmental friendly derivations from natural biomass are highly desired. Herein, a new biocarbon composite, carbonized loofah/tin(IV) sulfide (CLF@SnS2) foam, was successfully prepared using loofah biofoam through an efficient and scalable method. The hierarchical CLF@SnS2 foam has a high-porous structure, which can provide channels for light traveling through the whole material. It is confirmed that such three-dimensional photocatalytic material can quickly purify Cr(VI)-containing wastewater under mild visible light irradiation, with a efficiency of 99.7% Cr(VI) reduction within 120 min. By contrast, CLF@SnS2 showed much better visible photocatalytic capacity than the uncarbonized counterpart (UCLF@ SnS2), because the photoelectrons produced by the SnS2 nanosheets can be rapidly exported by the continuous channels provided by the carbon shell. Besides the high visible light-driven photocatalytic activity, CLF@SnS2 also exhibits excellent cycling stability. More importantly, this study demonstrated that CLF@SnS2 can be used for practical applications due to its flexibility and economic availability.
机译:由于其独特和优异的性能,碳基材料广泛用于环境修复。由于这些材料的日常消耗巨大,非常需要来自天然生物质的经济和环保衍生。这里,通过有效和可伸缩的方法,使用丝瓜生物涂鸦成功地制备了一种新的生物羰基复合材料,碳化的稀释丝/锡(IV)硫化物(CLF @ SNS2)泡沫。分层CLF @ SNS2泡沫具有高多孔结构,可以提供用于穿过整个材料的光的通道。确实证实,这种三维光催化材料可以在温和可见光照射下快速纯化Cr(VI)覆盖废水,其效率为99.7%Cr(VI)在120分钟内降低。相比之下,CLF @ SNS2显示出比非碳化的对应物(UCLF @ SNS2)显示出更好的可见光催化容量,因为SNS2纳米片产生的光电子可以通过由碳壳提供的连续通道快速出口。除了高可见光的光催化活性外,CLF @ SNS2还表现出优异的循环稳定性。更重要的是,本研究表明,由于其灵活性和经济可用性,CLF @ SNS2可用于实际应用。

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