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Adsorption of Cadmium Manganese and Lead Ions from Aqueous Solutions Using Spent Coffee Grounds and Biochar Produced by Its Pyrolysis in the Fluidized Bed Reactor

机译:使用废咖啡渣和流化床反应器热解产生的生物炭从水溶液中吸附镉锰和铅离子

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摘要

The adsorption process of cadmium ions (Cd), manganese ions (Mn) and lead ions (Pb) onto the spent coffee grounds (SCG) and activated spent coffee grounds (biochar, A-SCG) was investigated. The SCG activation was carried out in the pyrolysis process in a fluidized bed reactor. scanning electron microscope (SEM) with energy dispersive X-ray spectroscopy (EDX), Fourier-transform infrared spectroscopy (FTIR), Brunauer–Emmett–Teller (BET) measurements and CHN analysis were used in order to define the differences between biomaterials. In the study the different mass of materials (0.2–0.5 g) and constant heavy metal volume and concentration (20 cm3/100 ppm) were investigated on the adsorption process. In order to describe the sorption parameters the Langmuir, Freundlich and Temkin isotherms were used. The maximum adsorption for biochar reached 22.3 mg/g for Pb ions, 19.6 mg/g for Mn ions and 19.4 mg/g for Cd ions which were noticeably higher than the results obtained for spent coffee grounds which reached 13.6 mg/g for Pb ions, 13.0 mg/g for Mn ions and 11.0 mg/g for Cd ions. Metal ion adsorption on both SCG and A-SCG was best described by the Langmuir model, thus chemisorption was a dominant type of adsorption. Studying the kinetics of the sorption process, one can see that the process is of a chemical nature according to the best fit of the pseudo-second rate order model. The obtained results show that the chosen sorbents can be used for the removal of cadmium, manganese and lead compounds from aqueous solutions with high efficiency.
机译:研究了镉离子(Cd),锰离子(Mn)和铅离子(Pb)在废咖啡渣(SCG)和活化废咖啡渣(biochar,A-SCG)上的吸附过程。 SCG活化是在流化床反应器的热解过程中进行的。使用扫描电子显微镜(SEM)和能量色散X射线光谱(EDX),傅立叶变换红外光谱(FTIR),Brunauer-Emmett-Teller(BET)测量和CHN分析来确定生物材料之间的差异。在研究中,研究了不同质量的材料(0.2-0.5 g)以及恒定的重金属体积和浓度(20 cm3 / 100 ppm)。为了描述吸附参数,使用了Langmuir,Freundlich和Temkin等温线。 Pb离子对生物炭的最大吸附量达到22.3 mg / g,Mn离子对生物炭的最大吸附量达到19.6 mg / g,Cd离子对19.4 mg / g的吸附量明显高于Pb离子对废咖啡渣的吸附量达到13.6 mg / g ,对于Mn离子为13.0 mg / g,对于Cd离子为11.0 mg / g。 Langmuir模型最好地描述了金属离子在SCG和A-SCG上的吸附,因此化学吸附是主要的吸附类型。通过研究吸附过程的动力学,可以发现该过程具有化学性质,这是根据拟二级速率阶数模型的最佳拟合得出的。所得结果表明,所选择的吸附剂可用于从水溶液中高效去除镉,锰和铅化合物。

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