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Production of sludge-based activated carbon: optimization and characterization

机译:污泥基活性炭的生产:优化和表征

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Activated carbon (AC) was produced from sewage sludge using ZnCl2, KOH, and H3PO4 as the activation agents. Effects of activation temperature (A), impregnation ratio (B), and activation time (C) on the yield and removal efficiency of methylene blue (MB) were investigated. Response surface methodology (RSM) and Box-Behnken design techniques and Design Expert software were used in the experimental design and optimization process. Based on the results, quadratic models for yield and MB removal efficiencies as functions of activation factors (A, B, and C) and their interactions were developed. When ZnCl2 was used, the statistical analysis results clearly indicated that the yield model was statistically insignificant; however, B, AB, AC, and BC were significant. On the other hand, the MB model, AB, AC, A(2), A(2)B, A(2)C, and AB(2) were all found to be significant. Characterization of produced AC samples was limited to samples that produced higher values of yield and MB removal efficiency. At optimum conditions, the results showed that surface area and pore size of the produced AC were 319.5 m(2)/g and 31.28 A, respectively, which were obtained with ZnCl2 at activation temperature and time of 700 degrees C and 60 min, respectively, and impregnation ratio of 1:0.6. The Fourier transform infrared spectroscopy results clearly showed that dominant functional groups presented on the surfaces of produced AC samples were O-H, C-C, C-O, and C=O.
机译:使用ZnCl2,KOH和H3PO4作为活化剂,由污水污泥产生活性炭(AC)。研究了活化温度(A),浸渍率(B)和活化时间(C)对亚甲基蓝(MB)收率和去除率的影响。在实验设计和优化过程中使用了响应面方法(RSM)和Box-Behnken设计技术以及Design Expert软件。基于结果,开发了作为激活因子(A,B和C)及其相互作用函数的产量和MB去除效率的二次模型。当使用ZnCl2时,统计分析结果清楚地表明,产量模型在统计上是不重要的。但是,B,AB,AC和BC都很重要。另一方面,MB模型AB,AC,A(2),A(2)B,A(2)C和AB(2)都被认为是有意义的。所生产的AC样品的表征仅限于产生更高产率和MB去除效率的样品。在最佳条件下,结果表明,生成的AC的表面积和孔径分别为319.5 m(2)/ g和31.28 A,这是分别在活化温度和活化温度为700℃和60分钟的时间内用ZnCl2获得的。 ,浸渍比为1:0.6。傅立叶变换红外光谱的结果清楚地表明,所产生的AC样品表面上存在的主要官能团为O-H,C-C,C-O和C = O。

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