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Preparation of mesoporous batatas biochar via soft-template method for high efficiency removal of tetracycline

机译:用软模板法制备介孔抗果实Batatas Biochar,用于高效去除四环素

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摘要

In this contribution, we apply a soft-template-assisted hydrothermal route using polyethylene-polypropylene glycol (F127) as soft-template agent and biomass batatas as carbon precursor to synthesis a novel hydrothermal mesoporous biochar (HMC-800) for adsorptive removal of tetracycline (TC) from wastewater. We use the biochar prepared without F127 and direct pyrolytic biochar for comparison. The physicochemical properties of all the studied biochar samples are measured using a suite of characterization techniques. Our results show that the HMC-800 displays the highest specific surface area (286.3 m~2/g) and total pore volume (0.249 cm~3/g), manifesting the introduction of F127 can result in formation of well-developed pore structures. Regarding adsorption properties, the HMC-800 outperforms other biochar samples for TC removal. Our finding shows that solution with near-neutral pH is favorable for TC removal, and the highest adsorption capacity is observed at initial solution pH value 7. In addition, our findings show that applying the pseudo-second-order kinetic and Freundlich isotherm equation closely models the recorded adsorption behavior. The maximum adsorption capacity is measured to be as much as 238.7 mg/g by Langmuir isotherm model. Pore filling, hydrogen-bonding and n-π interaction are suggested to be the prevailing adsorption mechanisms compared to the other mechanisms. Furthermore, the HMC-800 performs better in regeneration and reuse experiments, making it a promising adsorbent material for TC removal from wastewater.
机译:在这一贡献中,我们使用聚乙烯 - 聚丙烯二醇(F127)作为软模板剂和生物质Batatas作为碳前体应用软模板辅助水热途径,以合成新型水热介孔生物炭(HMC-800),用于吸附四环素的吸附去除(TC)来自废水。我们使用没有F127的Biochar,直接热解生物炭进行比较。使用研究的所有研究生物炭样品的物理化学特性使用套件进行测量。我们的结果表明,HMC-800显示出最高的比表面积(286.3米〜2 / g)和全孔总量(0.249cm〜3 / g),表现出F127的引入可以导致形成良好发育的孔隙结构。关于吸附性能,HMC-800优于其他生物炭样品进行TC去除。我们的发现表明,具有近中性pH的溶液有利于TC去除,并且在初始溶液pH值7处观察到最高的吸附能力7.此外,我们的研究结果表明,伪二阶动力学和Freundlich等温方程密切相关模型记录的吸附行为。测量最大吸附容量由Langmuir等温线模型高达238.7mg / g。与其他机制相比,建议孔填充,氢键和N-π相互作用是普遍的吸附机制。此外,HMC-800在再生和再利用实验中表现更好,使其成为从废水中去除TC的有望吸附材料。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|147397.1-147397.10|共10页
  • 作者单位

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 China Henan Vocational College of Water Conservancy and Environment Zhengzhou 450008 China;

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 China Henan Key Laboratory of Water Environment Simulation and Treatment North China University of Water Resources and Electric Power Zhengzhou 450046 China;

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 China Henan Key Laboratory of Water Environment Simulation and Treatment North China University of Water Resources and Electric Power Zhengzhou 450046 China;

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 China Henan Key Laboratory of Water Environment Simulation and Treatment North China University of Water Resources and Electric Power Zhengzhou 450046 China;

    School of Computing Engineering & Digital Technologies Teesside University Borough Road Middlesbrough TS1 3BX UK;

    School of Environmental and Municipal Engineering North China University of Water Resources and Electric Power Zhengzhou 450046 China Henan Key Laboratory of Water Environment Simulation and Treatment North China University of Water Resources and Electric Power Zhengzhou 450046 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Batatas; Mesoporous biochar; Soft-template method; Tetracycline;

    机译:吸附;蜡类;中孔生物炭;软模板法;四环素;

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