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Enhanced hexavalent chromium (Cr(VI)) removal from aqueous solution by Fe-Mn oxide-modified cattail biochar: adsorption characteristics and mechanism

机译:通过Fe-Mn氧化物改性的Cattail Biochar从水溶液中除去增强的六价铬(Cr(VI)):吸附特性和机制

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摘要

In the study, a novel Fe-Mn oxide-modified cattail biochar was synthesised and Cr(VI) adsorption on Fe-Mn oxide-modified biochar in water was investigated. XRF, XRD and FTIR results indicated that Fe and Mn were successfully loaded on the surface of Fe-Mn oxide-modified biochar. Batched experiments showed that Cr(VI) adsorption on Fe-Mn oxide-modified biochar fitted well with the pseudo-second-order kinetics model. The Freundlich isotherm adsorption model could better describe the isothermal adsorption process of Cr(VI) onto Fe-Mn oxide-modified biochar. The maximum saturated adsorption capacity data Q(m) of Fe-Mn oxide-modified biochar at 20 degrees C, 30 degrees C, and 40 degrees C were respectively 46.43, 52.12, and 59.81 mg center dot g(-1). The lower pH contributed to the adsorption of Cr(VI) onto Fe-Mn oxide-modified biochar. The effects of coexisting anions on the Cr(VI) removal efficiency were insignificant. Leaching experiments showed that the leakage risk of Mn2+ during the adsorption process was negligible. The adsorption mechanisms of Cr(VI) onto Fe-Mn oxide-modified biochar mainly involve electrostatic attraction, ligand exchange and complexation. All the results suggested that Fe-Mn oxide-modified biochars could serve as promising adsorbents for Cr(VI) pollution treatment.
机译:在该研究中,已经合成了一种新型Fe-Mn氧化物改性的Citriail Biochar,并研究了在水中的Fe-Mn氧化物改性生物炭的Cr(VI)吸附。 XRF,XRD和FTIR结果表明Fe和Mn成功地装载在Fe-Mn氧化物改性的BioChar表面上。批量实验表明,用伪二阶动力学模型,Cr(VI)对Fe-Mn氧化物改性的BioChar的吸附很好。 Freundlich等温度吸附模型可以更好地描述Cr(VI)的等温吸附过程在Fe-Mn氧化物改性的生物炭中。 Fe-Mn氧化物改性生物炭的最大饱和吸附能量数据Q(m)分别为46.43,52.12和59.81mg中心点G(-1)。较低的pH有助于将Cr(VI)吸附到Fe-Mn氧化物改性的生物炭中。共存阴离子对Cr(VI)去除效率的影响是微不足道的。浸出实验表明,吸附过程中MN2 +的泄漏风险可忽略不计。 Cr(VI)在Fe-Mn氧化物改性生物炭中的吸附机制主要涉及静电吸引,配体交换和络合。所有结果表明Fe-Mn氧化物改性的生物脉可用作Cr(vi)污染治疗的有前景的吸附剂。

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