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首页> 外文期刊>Data in Brief >Experimental design and data on the adsorption and photocatalytic properties of boron nitride/cadmium aluminate composite for Cr(VI) and cefoxitin sodium antibiotic
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Experimental design and data on the adsorption and photocatalytic properties of boron nitride/cadmium aluminate composite for Cr(VI) and cefoxitin sodium antibiotic

机译:关于Cr(VI)和CeFoxitin钠抗生素的氮化硼/镉铝合金复合材料吸附和光催化性能的实验设计和数据

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This article reports the experimental data on the adsorption and photocatalytic degradation-reduction properties of pure boron nitride (BN), cadmium aluminate (CdAl2O4) and boron nitride/cadmium aluminate (BN/CdAl2O4) composite for the hexavalent chromium (Cr(VI)) and cefoxitin sodium (CFT) in aqueous solution under the ultraviolet (UV) and visible light irradiation. This work evaluates the adsorption and photocatalytic efficiency of the 0.2g BN coupled with the CdAl2O4in BN-0.2/CdAl2O4composite for Cr(VI) and CFT. The experiments were performed by mixing the 0.025 material with 50 mL solution of known concentration (15 mg/L) at pH 3 for Cr(VI) and pH 7 for CFT. The obtained data can be valuable to select the proper light source (UV or visible) and pollutant to investigate the application of BN-0.2/CdAl2O4composite. Moreover, presented data can help identify the equilibrium time for the adsorption process and to recognize the best process for the removal of the pollutants from wastewaters. A comparison of the obtained data with previously reported works has been conducted for the understanding of the adsorption and photocatalysis of Cr(VI) and CFT using various materials under the different experimental conditions.
机译:本文介绍六价铬(Cr(vi))的纯氮化硼(BN),铝酸钠(CDAL2O4)和氮化硼/镉/镉(BN / CDAL2O4)复合材料的吸附和光催化降解降解性能的实验数据(Cr(vi))在紫外(UV)下的水溶液中的食物素钠(CFT)和可见光照射。该作品评估0.2GBN与CDAL2O4蛋白BN-0.2 / CDAL2O4CO 4的吸附和光催化效率为CR(VI)和CFT。通过将0.025种材料与50ml已知浓度(15mg / L)的溶液在pH 3下混合在CFT的pH 3,pH 7的pH 3中进行实验。所获得的数据可以是有价值的,以选择适当的光源(UV或可见)和污染物,以研究BN-0.2 / CDAL2O4COMPOSE的应用。此外,呈现的数据可以帮助识别吸附过程的平衡时间,并识别从废水中去除污染物的最佳过程。已经对使用先前报告的作品进行了比较,以了解Cr(VI)和CFT的吸附和光催化在不同的实验条件下使用各种材料的吸附和光催化。

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