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A Comparative Study of Phenol Removal by Pisum-sativum Peels Biochars Derived at Different Pyrolysis Temperatures: Isotherm, Kinetic and Thermodynamic Modelling

机译:A Comparative Study of Phenol Removal by Pisum-sativum Peels Biochars Derived at Different Pyrolysis Temperatures: Isotherm, Kinetic and Thermodynamic Modelling

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Pea peels were used for the preparation of biochar at different temperatures (250°C: PP250, 500 °C: PP500 and 750°C: PP750) using slow pyrolysis for 1 h and used for the phenol removal from an aqueous medium. Biochar samples were characterized by SEM, XRD and FT-IR. The phenol removal was examined as a function of pH, temperature, and NaCl and urea concentration. The optimum pH and temperature were found to be 6.0 and 25 °C respectively. Presence of NaCl and urea primarily affected the adsorption capacity of PP250 and slightly affected the adsorption potential of PP500 and PP750. The maximum biosorption capacity for the PP250, PP500 and PP750 were found to be 34.63, 46.70, and 60.10mg/g respectively. The Langmuir isotherm and Pseudo-second order kinetic model best explained the adsorption. Thermodynamic parameters corroborated the physical and exothermic nature of adsorption. PP750 can preferably be used for phenol removal than PP500 and PP250.
机译:豌豆皮被用于生物炭的制备在不同的温度下(250°C: PP250 500°C:PP500和750°C: PP750)使用慢速热解1 h和用于苯酚去除的水介质。以SEM、XRD和红外光谱。去除研究了pH值的函数,温度和氯化钠和尿素的浓度。最佳pH值和温度是6.0分别和25°C。主要的吸附能力的影响PP250吸附和略受影响PP500和PP750的潜力。生物吸附容量PP250, PP500和PP750被发现是34.63,46.70,和分别为60.10毫克/克。Pseudo-second阶动力学模型最好的解释吸附。证实了物理和自然放热的吸附。比PP500和PP250苯酚去除。

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