Sulu Çözeltide Tetrasiklin Giderimi için Fındık ve Antep Fıstığı Kabuklarının Eş-karbonizasyonundan Elde Edilen Yeni Hidrokömürün Kullanımı

Hasan Sayğili, Gülbahar AKKAYA SAYĞILI
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Abstract

In present work, the use of a new hydrochar (HSPSHC) produced by the combined hydrothermal carbonization (co-HTC) of hazelnut and pistachio shells (HS and PS) as a sorbent material in tetracycline (TC) antibiotic removal from water was investigated. It was obtained from hydrothermal carbonization of HSPSHC, hazelnut and pistachio shells by mixing 1:1 by mass at 220 oC for 6 h. Mass yield, energy density and higher heating value parameters were calculated for HSPSHC, and the surface chemistry was characterised using Fourier transform infrared spectroscopy (FTIR). TC adsorption on HSPSHC was carried out by kinetic and isotherm studies using batch method. The experimental kinetic results were qualified in pseudo first-order (PFO) and second-order (PSO) kinetic equations and it was observed that the adsorption complied with the PSO kinetics. The experimentally obtained results were applied to Langmuir and Freundlich model equations and isotherm modeling was performed. The adsorption isotherm of TC on the prepared hydrochar was well fitted by the Langmuir equation, which yielded a maximum monolayer adsorption capacity of TC of qm: 137.06 mg/g at 323 K and pH 4.0 on the HSPSHC hydrochar. In addition, thermodynamic studies revealed that the adsorption of TC by HSPSHC is spontaneous and is an endothermic process.
利用榛子壳和开心果壳共碳化产生的新型氢炭去除水溶液中的四环素
在本研究中,研究了将榛子壳和开心果壳(HS 和 PS)联合水热碳化(co-HTC)产生的新型水碳(HSPSHC)作为吸附材料用于去除水中的四环素(TC)抗生素。HSPSHC 是由 HSPSHC、榛子壳和开心果壳按 1:1 的质量比在 220 摄氏度下混合经水热碳化 6 小时后得到的。采用间歇法对 HSPSHC 上的 TC 吸附进行了动力学和等温线研究。实验动力学结果符合伪一阶(PFO)和二阶(PSO)动力学方程,并观察到吸附符合 PSO 动力学。实验结果被应用于 Langmuir 和 Freundlich 模型方程,并建立了等温线模型。用 Langmuir 方程很好地拟合了 TC 在制备的水碳上的吸附等温线,得出在 323 K 和 pH 值为 4.0 时,HSPSHC 水碳上 TC 的最大单层吸附容量为 qm:137.06 mg/g。此外,热力学研究表明,HSPSHC 对三氯乙酸的吸附是自发的,是一个内热过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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