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首页> 外文期刊>Environmental Science and Pollution Research >Performance and mechanism of fluoride adsorption from groundwater by lanthanum-modified pomelo peel biochar
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Performance and mechanism of fluoride adsorption from groundwater by lanthanum-modified pomelo peel biochar

机译:用镧改良柚皮炭(Linewater)氟化物吸附性能与机制。

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摘要

To obtain an economical and effective adsorbent for fluoride removal, lanthanum-loaded pomelo peel biochar (PPBC-La) was synthesized using a facile approach. The batch adsorption experiments were investigated to determine adsorbent performance. The PPBC-La and its pristine biochar (PPBC) were characterized by scanning electronic microscopy (SEM), zeta potential, Brunauer-Emmett-Teller (BET), Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS) methods. Experimental results showed that the adsorption data were described well by the pseudo-second-order kinetic and Freundlich isotherm models. The maximum fluoride adsorption capacity for PPBC-La was found to be 19.86 mg/g at 25 degrees C and pH 6.5. The PPBC-La worked well at pH 2.4-9.6 and carried positive charge at pH 5.8. The presence of SO42-, Cl-, and NO3 had a slight effect on fluoride uptake except HCO3- and PO43-. The real groundwater study testified that 9.8 mg/L of fluoride was removed effectively at 1.0 g/L of dosage and pH 5.2. The regeneration results revealed that the PPBC-La had a good reusability. According to FTIR, XPS analysis and the anion exchange experiment, anions (NO3- and OH-) exchange with fluoride ions was mainly responsible for fluoride adsorption.
机译:为了获得氟化物去除的经济且有效的吸附剂,使用容易的方法合成含镧装载的柚皮生物炭(PPBC-LA)。研究了分批吸附实验以确定吸附性能。通过扫描电子显微镜(SEM),Zeta电位,BRONAUER-EMMETT-TEELER(BET),傅里叶变换红外光谱(FTIR)和X射线光电子谱(X射线光电子谱(XP),表征PPBC-LA及其原始BioChOR(PPBC)。方法。实验结果表明,伪二阶动力学和Freundlich等温线模型很好地描述了吸附数据。发现PPBC-1a的最大氟化物吸附能力为19.86mg / g,在25℃和pH 6.5。 PPBC-1a在pH 2.4-9.6下工作良好,并在pH下携带正电荷。 5.8。除了HCO3-和PO43之外,SO42-,CL-和NO3的存在对氟化物摄取有轻微影响。真正的地下水研究证明了9.8mg / L的氟化物,在1.0g / L的剂量和pH5.2下被消除。再生结果表明,PPBC-LA具有良好的可重用性。根据FTIR,XPS分析和阴离子交换实验,阴离子(NO 3和OH-)交换主要负责氟化物吸附。

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