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Copper loaded on activated carbon as an efficient adsorbent for removal of methylene blue

机译:负载在活性炭上的铜作为去除亚甲蓝的有效吸附剂

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Copper loaded activated carbon (Cu-AC) was prepared by impregnating it with cupric nitrate followed by microwave heating and then used for removing dyes in wastewater. The Cu-AC was thoroughly characterized by N2 adsorption and desorption isotherms, SEM, EDS, XRD, XPS, FT-IR, and Raman. It was proven that cupric nitrate was successfully loaded onto activated carbon with the resulting formation of copper, copper oxide, and cuprous oxide. The Cu-AC was used to treat five kinds of dyes in wastewaters (Rhodamine B, MB, Amaranth, Congo red, and Eosin-Y). Comparing the adsorption capacity of these five dye wastewaters, it was proven that copper and copper oxides have photocatalytic degradation ability that can improve dye removal efficiency. Experimental adsorption data of MB were fit using several kinetic and isotherm models. Kinetic studies indicated that a pseudo-second order is the most suitable model for the adsorption process with a correlation coefficient of R2 > 0.999. The equilibrium adsorption data of MB showed that it followed the Langmuir isotherm; the Langmuir maximum adsorption capacity was 373 mg g?1. Compared with ordinary activated carbon, the maximum adsorption capacity of Cu-AC increased by 37.8%. Additionally, through thermodynamic calculations the negative value of ΔG and positive value of ΔH showed that the adsorption was a spontaneous and endothermic process. All the above results reveal that Cu-AC can be an effective absorbent for removing dyes from wastewater.
机译:负载铜的活性炭(Cu-AC)的制备方法是将其浸入硝酸铜中,然后进行微波加热,然后用于去除废水中的染料。通过N 2 吸附和解吸等温线,SEM,EDS,XRD,XPS,FT-IR和Raman彻底表征了Cu-AC。事实证明,硝酸铜已成功负载到活性炭上,形成了铜,氧化铜和氧化亚铜。 Cu-AC用于处理废水中的五种染料(若丹明B,MB,A菜红,刚果红和曙红Y)。比较这五种染料废水的吸附量,证明铜和氧化铜具有光催化降解能力,可以提高染料去除效率。使用几种动力学和等温线模型拟合了MB的实验吸附数据。动力学研究表明,假二阶是最适合吸附过程的模型,其相关系数为 R 2 ?1 。与普通活性炭相比,Cu-AC的最大吸附量增加了37.8%。另外,通过热力学计算,Δ G 的负值和Δ H 的正值表明吸附是一个自发的吸热过程。以上所有结果表明,Cu-AC可以有效去除废水中的染料。

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