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Highly-Efficient Adsorptive Removal of Tetracycline Using Magnetic Sugarcane Bagasse Biochar Modified by Lanthanum

机译:镧修饰的磁性甘蔗渣生物炭高效去除四环素

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As one of the agricultural wastes, sugarcane bagasse was easily pyrolyzed under low temperature to obtain bagasse biochar. Lanthanum-modified Fe3O4 particles were immobilized on the bagasse biochar to prepare La-modified magnetic biochar. The magnetic biochar was characterized by scanning electron microscope and X-ray photoelectron spectroscopy. It was found that the sizes of these biochar flakes were predominantly within 50 μm. At the same time, La species and magnetic particles are well combined with the biochar substrate. The magnetic biochar with a presumed molar ratio of La/Fe3O4 at 1:100 demonstrated a higher adsorption capability, which was enhanced by 69.8% compared to the raw bagasse biochar. The experimental points were quite close to curves simulated by both Langmuir and Freundlich isotherm models. From Langmuir model, the R2 values were 0.984, 0.980 and 0.983 at 288, 298 and 308 K, respectively. The maximum adsorption capacity (qmax) for tetracycline reached 122.5 mg/g at 298 K and qmax increased with a rise in the reaction temperature, indicating the adsorption process was endothermic.
机译:作为一种农业废弃物,甘蔗渣很容易在低温下热解以获得甘蔗渣生物炭。将镧改性的Fe 3 O 4颗粒固定在蔗渣生物炭上以制备La改性的磁性生物炭。通过扫描电子显微镜和X射线光电子能谱对磁性生物炭进行表征。发现这些生物炭薄片的尺寸主要在50μm以内。同时,La物种和磁性颗粒与生物炭基质良好结合。推测的La / Fe3O4摩尔比为1:100的磁性生物炭显示出更高的吸附能力,与生甘蔗渣生物炭相比提高了69.8%。实验点非常接近Langmuir和Freundlich等温线模型模拟的曲线。根据Langmuir模型,在288、298和308 K时R2值分别为0.984、0.980和0.983。在298 K下,四环素的最大吸附容量(qmax)达到122.5 mg / g,并且随着反应温度的升高qmax增大,表明吸附过程是吸热的。

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