首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Adsorption Removal of 17β-Estradiol from Water by Rice Straw-Derived Biochar with Special Attention to Pyrolysis Temperature and Background Chemistry
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Adsorption Removal of 17β-Estradiol from Water by Rice Straw-Derived Biochar with Special Attention to Pyrolysis Temperature and Background Chemistry

机译:稻草衍生的生物炭对热解温度和背景化学的特别注意吸附去除水中的17β-雌二醇

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摘要

Rice straw biochar that produced at three pyrolysis temperatures (400, 500 and 600 °C) were used to investigate the adsorption properties of 17β-estradiol (E2). The biochar samples were characterized by scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FTIR), elemental analysis and BET surface area measurements. The influences of pyrolysis temperature, E2 concentration, pH, ionic strength, background electrolyte and humic acid were studied. Kinetic and isotherm results illustrated that the adsorption process could be well described by pseudo-second-order and Freundlich models. Experimental results showed that ionic strength had less influence on the adsorption of E2 by 500 and 600 °C rice straw biochar. Further, multivalent ions had positive impact on E2 removal than monovalent ions and the influence of the pyrolysis temperature was unremarkable when background electrolyte existed in solutions. The adsorption capacity of E2 decreased with the pH ranged from 3.0 to 12.0 and the humic acid concentration from 2 to 10 mg L−1. Electrostatic attractions and π-π interaction were involved in the adsorption mechanisms. Compared to low-temperature biochar, high-temperature biochar exhibited a better adsorption capacity for E2 in aqueous solution, indicated it had a greater potential for E2 pollution control.
机译:使用在三种热解温度(400、500和600°C)下产生的稻草生物炭来研究17β-雌二醇(E2)的吸附特性。通过扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR),元素分析和BET表面积测量对生物炭样品进行表征。研究了热解温度,E2浓度,pH,离子强度,背景电解质和腐殖酸的影响。动力学和等温线结果表明,吸附过程可以用伪二级和Freundlich模型很好地描述。实验结果表明,离子强度对500和600°C稻草生物炭对E2的吸附影响较小。此外,当溶液中存在背景电解质时,多价离子比单价离子对E2的去除有积极影响,并且热解温度的影响不明显。在pH为3.0〜12.0,腐殖酸浓度为2〜10 mg L -1 的条件下,E2的吸附能力下降。静电吸附和π-π相互作用参与了吸附机理。与低温生物炭相比,高温生物炭在水溶液中对E2的吸附能力更好,表明它具有更大的E2污染控制潜力。

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