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Preparation, characterization and evaluation of adsorptive properties of leather waste based activated carbon via physical and chemical activation

机译:通过物理和化学活化制备,表征和评估皮革废料基活性炭的吸附性能

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摘要

In this study, utilization of leather waste (LW) as precursor for activated carbon preparation by physical (steam) and chemical (pyrophosphoric acid, H4P2O7) activation in different conditions (carbonization temperature, carbonization time and impregnation ratio) is discussed. Thermal gravimetric analysis of LW-H4P2O7 indicated that H4P2O7 as the activator promotes the formation of carbonaceous material. The activated carbons obtained under the best conditions were characterized using N2 adsorption/ desorption isotherms, X-ray diffraction (XRD), scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FT-IR). The preparation principle of activated carbon with different methods was also studied. Batch adsorption studies were performed to evaluate the adsorption properties toward methylene blue (MB). Activated carbon produced by H4P2O7 activation showed higher yield, lower Sbet. more functional groups and higher adsorption capacities for MB than the carbons prepared by steam activation. Adsorption experiment indicated that the adsorption data fitted the Langmuir equation better than Freundlich, Temkin and Dubinin-Radushkevich (D-R) isotherms, and the capacity of adsorption for AC-H4P2O7 was superior to AC-steam, indicating the mechanisms of π-π electron-donor-acceptor (EDA) interaction, cation exchange and hydrogen bond were involved due to the more functional groups. The adsorption has been confirmed to be a spontaneous and endothermic process.
机译:在这项研究中,讨论了在不同条件(碳化温度,碳化时间和浸渍率)下,通过物理(蒸汽)和化学(焦磷酸,H4P2O7)活化将皮革废料(LW)用作制备活性炭的前体。 LW-H4P2O7的热重分析表明,作为活化剂的H4P2O7促进了含碳物质的形成。使用N2吸附/解吸等温线,X射线衍射(XRD),扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)对在最佳条件下获得的活性炭进行了表征。研究了不同方法制备活性炭的原理。进行分批吸附研究以评估对亚甲基蓝(MB)的吸附性能。 H4P2O7活化产生的活性炭具有较高的收率和较低的Sbet。比通过蒸汽活化制备的碳具有更多的官能团和更高的MB吸附能力。吸附实验表明,吸附数据拟合Langmuir方程的性能优于Freundlich,Temkin和Dubinin-Radushkevich(DR)等温线,并且AC-H4P2O7的吸附能力优于AC-蒸汽,表明π-π电子-由于官能团较多,因此涉及了供体-受体(EDA)相互作用,阳离子交换和氢键。已经证实吸附是自发的和吸热的过程。

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