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Characterization of biochar prepared from slow pyrolysis of Jordanian olive oil processing solid waste and adsorption efficiency of Hg2+ ions in aqueous solutions

机译:约旦橄榄油加工固体废物缓慢热解制备的生物炭的表征及水溶液中Hg2 +离子的吸附效率

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Solid waste from Jordanian olive oil processing (OOSW) was used to prepare biochar samples by slow pyrolysis at terminal temperatures of 350, 450, 550 and 630 degrees C; henceforth known as BC-350, BC-450, BC-550 and BC-630, respectively. These samples were characterized by Fourier transform infrared spectroscopy, scanning electron microscopy and X-ray diffraction, ash content, moisture content and surface area. The ability of the biochar to remove Hg2+ ions from aqueous solutions was investigated in laboratory scale batch experiments. The kinetics, effect of pH and temperature were studied. The optimum pH value for Hg2+ adsorption was 5. Dubinin-Radushkevich (D-R) isotherm model was the best fit for the experimental results. Based on the D-R model, the maximum adsorption capacities at 25 degrees C were 84.93, 94.48, 96.11 and 104.59 mg.g(-1), for BC-350, BC-450, BC-550 and BC-630, respectively. The pseudo-second-order kinetic model was a good fit for the experimental data. The calculated change in free energy Delta G and enthalpy Delta H indicated that the adsorption process was spontaneous and exothermic in nature. The positive value of Delta S showed increased randomness of the solid/solution interface during the adsorption. The results indicated that biochar derived from OOSW can be a good adsorbent for treatment of water contaminated with Hg2+.
机译:使用约旦橄榄油加工(OOSW)产生的固体废物,通过在350、450、550和630摄氏度的终温下缓慢热解来制备生物炭样品。此后分别称为BC-350,BC-450,BC-550和BC-630。这些样品通过傅里叶变换红外光谱,扫描电子显微镜和X射线衍射,灰分含量,水分含量和表面积进行表征。在实验室规模的分批实验中研究了生物炭从水溶液中去除Hg2 +离子的能力。研究了动力学,pH和温度的影响。 Hg2 +吸附的最佳pH值为5。Dubinin-Radushkevich(D-R)等温模型最适合实验结果。基于D-R模型,对于BC-350,BC-450,BC-550和BC-630,在25摄氏度下的最大吸附容量分别为84.93、94.48、96.11和104.59 mg.g(-1)。拟二阶动力学模型非常适合实验数据。计算出的自由能ΔG和焓ΔH的变化表明吸附过程是自然的并且是放热的。 ΔS的正值表明吸附过程中固/液界面的随机性增加。结果表明,OOSW衍生的生物炭可以作为处理Hg2 +污染水的良好吸附剂。

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